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Investigation of ruling parameters on the growth of side and back stimulated Raman scattering in inhomogeneous plasmas at shock ignition laser intensity
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作者 G.Cristoforetti E.Hume +28 位作者 S.Agarwal D.Batani M.Cervenak P.Devi R.Dudzak D.Ettel P.Gajdos K.Glize S.Jelinek L.Juha P.Koester M.Krupka M.Krus H.Larreur G.Malka D.Mancelli P.E.Masson-Laborde A.Morace Ph.Nicolai O.Renner D.Singappuli S.Singh M.Tatarakis X.Yuan Y.Wang N.Woolsey J.Zhang X.Zhao L.A.Gizzi 《Matter and Radiation at Extremes》 2025年第4期15-23,共9页
Recent experiments at the National Ignition Facility and theoretical modeling suggest that side stimulated Raman scattering(SSRS)instability could reduce laser–plasma coupling and generate considerable fluxes of supr... Recent experiments at the National Ignition Facility and theoretical modeling suggest that side stimulated Raman scattering(SSRS)instability could reduce laser–plasma coupling and generate considerable fluxes of suprathermal hot electrons under interaction conditions envisaged for direct-drive schemes for inertial confinement fusion.Nonetheless,SSRS remains to date one of the least understood parametric instabilities.Here,we report the first angularly and spectrally resolved measurements of scattered light at laser intensities relevant for the shock ignition scheme(I×10^(16)W/cm^(2)),showing significant SSRS growth in the direction perpendicular to the laser polarization.Modification of the focal spot shape and orientation,obtained by using two different random phase plates,and of the density gradient of the plasma,by utilizing exploding foil targets of different thicknesses,clearly reveals a different dependence of backward SRS(BSRS)and SSRS on experimental parameters.While convective BSRS scales with plasma density scale length,as expected by linear theory,the growth of SSRS depends on the spot extension in the direction perpendicular to laser polarization.Our analysis therefore demonstrates that under current experimental conditions,with density scale lengths L_(n)≈60–120μm and spot sizes FWHM≈40–100μm,SSRS is limited by laser beam size rather than by the density scale length of the plasma. 展开更多
关键词 inertial confinement fusionnonethelessssrs theoretical modeling backwards stimulated Raman scattering side stimulated raman scattering ssrs instability national ignition facility plasma density gradient reduce laser plasma coupling suprathermal hot electrons
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Optimization of a laser plasma-based x-ray source according to WDM absorption spectroscopy requirements 被引量:1
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作者 A.S.Martynenko S.A.Pikuz +14 位作者 I.Yu.Skobelev S.N.Ryazantsev C.D.Baird N.Booth L.N.K.Dohl P.Durey A.Ya.Faenov D.Farley R.Kodama K.Lancaster P.McKenna C.D.Murphy C.Spindloe T.A.Pikuz N.Woolsey 《Matter and Radiation at Extremes》 SCIE CAS CSCD 2021年第1期37-44,共8页
X-ray absorption spectroscopy is a well-accepted diagnostic for experimental studies of warm dense matter.It requires a short-lived X-ray source of sufficiently high emissivity and without characteristic lines in the ... X-ray absorption spectroscopy is a well-accepted diagnostic for experimental studies of warm dense matter.It requires a short-lived X-ray source of sufficiently high emissivity and without characteristic lines in the spectral range of interest.In the present work,we discuss how to choose an optimum material and thickness to get a bright source in the wavelength range 2A–6A(∼2 keV to 6 keV)by considering relatively low-Z elements.We demonstrate that the highest emissivity of solid aluminum and silicon foil targets irradiated with a 1-ps high-contrast sub-kJ laser pulse is achieved when the target thickness is close to 10μm.An outer plastic layer can increase the emissivity even further. 展开更多
关键词 LASER WDM SOURCE
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Characterization of hot electrons generated by laser-plasma interaction at shock ignition intensities 被引量:1
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作者 E.D.Filippov M.Khan +17 位作者 A.Tentori P.Gajdos A.S.Martynenko R.Dudzak P.Koester G.Zeraouli D.Mancelli F.Baffigi L.A.Gizzi S.A.Pikuz Ph.D.Nicolaï N.C.Woolsey R.Fedosejevs M.Krus L.Juha D.Batani O.Renner G.Cristoforetti 《Matter and Radiation at Extremes》 SCIE EI CSCD 2023年第6期74-89,共16页
In an experiment carried out at the Prague Asterix Laser System at laser intensities relevant to shock ignition conditions(I>10^(16) W/cm^(2)),the heating and transport of hot electrons were studied by using severa... In an experiment carried out at the Prague Asterix Laser System at laser intensities relevant to shock ignition conditions(I>10^(16) W/cm^(2)),the heating and transport of hot electrons were studied by using several complementary diagnostics,i.e.,K_(α)time-resolved imaging,hard x-ray filtering(a bremsstrahlung cannon),and electron spectroscopy.Ablators with differing composition from low Z(parylene N)to high Z(nickel)were used in multilayer planar targets to produce plasmas with different coronal temperature and collisionality and modify the conditions of hot-electron generation.The variety of available diagnostics allowed full characterization of the population of hot electrons,retrieving their conversion efficiency,time generation and duration,temperature,and angular divergence.The obtained results are shown to be consistent with those from detailed simulations and similar inertial confinement fusion experiments.Based on the measured data,the advantages,reliability,and complementarity of the experimental diagnostics are discussed. 展开更多
关键词 SPECTROSCOPY shock allowed
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Zeeman splitting observations in laser-produced magnetized blast waves
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作者 A.Triantafyllidis J.-R.Marquès +10 位作者 S.Ferri A.Calisti Y.Benkadoum Y.De León A.Dearling A.Ciardi J.Béard J.-M.Lagarrigue N.Ozaki M.Koenig B.Albertazzi 《Matter and Radiation at Extremes》 2025年第4期70-79,共10页
We report the observation of Zeeman splitting in multiple spectral lines emitted by a laser-produced,magnetized plasma(1–3×10^(18)cm^(-3),1–15 eV)in the context of a laboratory astrophysics experiment under a c... We report the observation of Zeeman splitting in multiple spectral lines emitted by a laser-produced,magnetized plasma(1–3×10^(18)cm^(-3),1–15 eV)in the context of a laboratory astrophysics experiment under a controlled magneticfield up to 20T.Nitrogen lines(NII)in the visible range were used to diagnose the magneticfield and plasma conditions.This was performed by coupling our data with(563–574 nm)the Stark–Zeeman line-shape code PPPB.The excellent agreement between experiment and simulations paves the way for a non-intrusive experimental platform to get time-resolved measurements of the local magneticfield in laboratory plasmas. 展开更多
关键词 laboratory astrophysics experiment zeeman splitting diagnose magnetic eld plasma conditionsthis Zeeman splitting controlled magnetic eld nitrogen lines coupling our data laser produced magnetized plasma
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Bright betatron radiation from direct-laseraccelerated electrons at moderate relativistic laser intensity 被引量:2
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作者 O.N.Rosmej X.F.Shen +8 位作者 A.Pukhov L.Antonelli F.Barbato M.Gyrdymov M.M.Gunther S.Zahter V.S.Popov N.G.Borisenko N.E.Andreev 《Matter and Radiation at Extremes》 SCIE CAS CSCD 2021年第4期10-17,共8页
Direct laser acceleration(DLA)of electrons in a plasma of near-critical electron density(NCD)and the associated synchrotron-like radiation are discussed for moderate relativistic laser intensity(normalized laser ampli... Direct laser acceleration(DLA)of electrons in a plasma of near-critical electron density(NCD)and the associated synchrotron-like radiation are discussed for moderate relativistic laser intensity(normalized laser amplitude a0≤4.3)and ps length pulse.This regime is typical of kJ PW-class laser facilities designed for high-energy-density(HED)research.In experiments at the PHELIX facility,it has been demonstrated that interaction of a 1019 W/cm2 sub-ps laser pulse with a sub-mm length NCD plasma results in the generation of high-current well-directed superponderomotive electrons with an effective temperature ten times higher than the ponderomotive potential[Rosmej et al.,Plasma Phys.Controlled Fusion 62,115024(2020)].Three-dimensional particle-in-cell simulations provide good agreement with the measured electron energy distribution and are used in the current work to study synchrotron radiation from the DLA-accelerated electrons.The resulting x-ray spectrum with a critical energy of 5 keV reveals an ultrahigh photon number of 731011 in the 1–30 keV photon energy range at the focused laser energy of 20 J.Numerical simulations of betatron x-ray phase contrast imaging based on the DLA process for the parameters of a PHELIX laser are presented.The results are of interest for applications in HED experiments,which require a ps x-ray pulse and a high photon flux. 展开更多
关键词 INTENSITY RELATIVISTIC CRITICAL
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Proton radiography in background magnetic fields
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作者 C.Arran C.P.Ridgers N.C.Woolsey 《Matter and Radiation at Extremes》 SCIE CAS CSCD 2021年第4期59-65,共7页
Proton radiography has proved increasingly successful as a diagnostic for electric and magnetic fields in high-energy-density physics experiments.Most experiments use target-normal sheath acceleration sources with a w... Proton radiography has proved increasingly successful as a diagnostic for electric and magnetic fields in high-energy-density physics experiments.Most experiments use target-normal sheath acceleration sources with a wide energy range in the proton beam,since the velocity spread can help differentiate between electric and magnetic fields and provide time histories in a single shot.However,in magnetized plasma experiments with strong background fields,the broadband proton spectrum leads to velocity-spread-dependent displacement of the beam and significant blurring of the radiograph.We describe the origins of this blurring and show how it can be removed from experimental measurements,and we outline the conditions under which such deconvolutions are successful.As an example,we apply this method to a magnetized plasma experiment that used a background magnetic field of 3 T and in which the strong displacement and energy spread of the proton beam reduced the spatial resolution from tens of micrometers to a few millimeters.Application of the deconvolution procedure accurately recovers radiographs with resolutions better than 100μm,enabling the recovery of more accurate estimates of the path-integrated magnetic field.This work extends accurate proton radiography to a class of experiments with significant background magnetic fields,particularly those experiments with an applied external magnetic field. 展开更多
关键词 field. DISPLACEMENT removed
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Reflection of intense laser light from microstructured targets as a potential diagnostic of laser focus and plasma temperature
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作者 J.Jarrett M.King +11 位作者 R.J.Gray N.Neumann L.Dhl C.D.Baird T.Ebert M.Hesse A.Tebartz D.R.Rusby N.C.Woolsey D.Neely M.Roth P.McKenna 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2019年第1期10-16,共7页
The spatial-intensity profile of light reflected during the interaction of an intense laser pulse with a microstructured target is investigated experimentally and the potential to apply this as a diagnostic of the int... The spatial-intensity profile of light reflected during the interaction of an intense laser pulse with a microstructured target is investigated experimentally and the potential to apply this as a diagnostic of the interaction physics is explored numerically. Diffraction and speckle patterns are measured in the specularly reflected light in the cases of targets with regular groove and needle-like structures, respectively, highlighting the potential to use this as a diagnostic of the evolving plasma surface. It is shown, via ray-tracing and numerical modelling, that for a laser focal spot diameter smaller than the periodicity of the target structure, the reflected light patterns can potentially be used to diagnose the degree of plasma expansion, and by extension the local plasma temperature, at the focus of the intense laser light. The reflected patterns could also be used to diagnose the size of the laser focal spot during a high-intensity interaction when using a regular structure with known spacing. 展开更多
关键词 high power LASER laser-solid INTERACTIONS plasma temperature diagnosis
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Plasma-Induced Interfacial Processes in Metal Halides FTIR Gas Cell Windows
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作者 Jaka Olenik Vasyl Shvalya +4 位作者 Martina Modic Jernej Ekar Janez Kovac Uros Cvelbar James L.Walsh 《Journal of Analysis and Testing》 EI CSCD 2023年第4期392-404,共13页
Fourier transform infrared spectroscopy(FTIR)is one of the most widely used vibrational diagnostic techniques to investigate gas-phase reactive oxygen and nitrogen species(RONS).However,the technique carries intrinsic... Fourier transform infrared spectroscopy(FTIR)is one of the most widely used vibrational diagnostic techniques to investigate gas-phase reactive oxygen and nitrogen species(RONS).However,the technique carries intrinsic challenges,particularly in relation to interfering peaks in the spectral data.This study explores the interfacial processes that occur when reactive oxygen and nitrogen species generated by a non-equilibrium air plasma interact with the metal halide windows of an FTIR gas cell,leading to the appearance and evolution of spurious absorption peaks which complicate spectral interpretation.Raman spectroscopy,X-ray photoelectron spectroscopy,time of flight secondary ion mass spectrometry and attenuated total reflectance-FTIR spectroscopy were used to elucidate the origin of spurious absorption peaks spanning the 1400-1300 cm^(-1)spectral range as a result of KBr exposure to plasma generated species.It was found that plasma exposed KBr contained a lower atomic fraction of Br which was replaced by the NO3nitrate group,the main absorbance peak of which progressively evolved with plasma exposure and affected the window transparency over the corresponding FTIR region.A correlation was revealed between KNO_(3)formation,plasma power and exposure time to a growth and change in molecular vibrational energies corresponding to asymmetric NO3stretching vibrations in the KNO_(3)structure. 展开更多
关键词 Cold atmospheric-pressure plasma Gas-phase FTIR RONS IR windows Surface functionalisation KBR
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Time evolution of stimulated Raman scattering and two-plasmon decay at laser intensities relevant for shock ignition in a hot plasma 被引量:1
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作者 G.Cristoforetti L.Antonelli +26 位作者 D.Mancelli S.Atzeni F.Baffigi F.Barbato D.Batani G.Boutoux F.D'Amato J.Dostal R.Dudzak E.Filippov Y.J.Gu L.Juha O.Klimo M.Krus S.Malko A.S.Martynenko Ph.Nicolai V.Ospina S.Pikuz O.Renner J.Santos V.T.Tikhonchuk J.Trela S.Viciani L.Volpe S.Weber L.A.Gizzi 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2019年第3期142-155,共14页
Laser–plasma interaction(LPI)at intensities 1015–1016 W·cm^-2 is dominated by parametric instabilities which can be responsible for a significant amount of non-collisional absorption and generate large fluxes o... Laser–plasma interaction(LPI)at intensities 1015–1016 W·cm^-2 is dominated by parametric instabilities which can be responsible for a significant amount of non-collisional absorption and generate large fluxes of high-energy nonthermal electrons.Such a regime is of paramount importance for inertial confinement fusion(ICF)and in particular for the shock ignition scheme.In this paper we report on an experiment carried out at the Prague Asterix Laser System(PALS)facility to investigate the extent and time history of stimulated Raman scattering(SRS)and two-plasmon decay(TPD)instabilities,driven by the interaction of an infrared laser pulse at an intensity^1.2×1016 W·cm^-2 with a^100μm scalelength plasma produced from irradiation of a flat plastic target.The laser pulse duration(300 ps)and the high value of plasma temperature(~4 ke V)expected from hydrodynamic simulations make these results interesting for a deeper understanding of LPI in shock ignition conditions.Experimental results show that absolute TPD/SRS,driven at a quarter of the critical density,and convective SRS,driven at lower plasma densities,are well separated in time,with absolute instabilities driven at early times of interaction and convective backward SRS emerging at the laser peak and persisting all over the tail of the pulse.Side-scattering SRS,driven at low plasma densities,is also clearly observed.Experimental results are compared to fully kinetic large-scale,two-dimensional simulations.Particle-in-cell results,beyond reproducing the framework delineated by the experimental measurements,reveal the importance of filamentation instability in ruling the onset of SRS and stimulated Brillouin scattering instabilities and confirm the crucial role of collisionless absorption in the LPI energy balance. 展开更多
关键词 plasma simulations shock IGNITION stimulated RAMAN scattering two-plasmon DECAY
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Global scattered-light spectrography for laser absorption and laser–plasma instability studies
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作者 Yihang Zhang Zhe Zhang +5 位作者 Xu Zhao Kevin Glize Yufeng Dong Xiaohui Yuan Yutong Li Jie Zhang 《High Power Laser Science and Engineering》 CSCD 2024年第6期138-143,共6页
An optical spectrometer system based on 60 channels of fibers has been designed and employed to diagnose light emissions from laser–plasma interactions. The 60 fiber collectors cover an integrated solid angle of π, ... An optical spectrometer system based on 60 channels of fibers has been designed and employed to diagnose light emissions from laser–plasma interactions. The 60 fiber collectors cover an integrated solid angle of π, enabling the measurement of global energy losses in a symmetrical configuration. A detecting spectral range from ultraviolet to nearinfrared, with angular distribution, allows for the understanding of the physical mechanisms involving various plasma modes. Experimental measurements of scattered lights from a conical implosion driven by high-energy nanosecond laser beams at the Shenguang-II Upgrade facility have been demonstrated, serving as reliable diagnostics to characterize laser absorption and energy losses from laser–plasma instabilities. This compact diagnostic system can provide comprehensive insights into laser energy coupling in direct-drive inertial confinement fusion research, which are essential for studying the driving asymmetry and improving the implosion efficiencies. 展开更多
关键词 inertial confinement fusion laser absorption laser-plasma instability laser-plasma interaction diagnostics
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Innovative Education and Training in high power laser plasmas(PowerLaPs)for plasma physics,high power laser-matter interactions and high energy density physics-theory and experiments
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作者 John Pasley Georgia Andrianaki +36 位作者 Andreas Baroutsos Dimitri Batani Emmanouil P.Benis Marco Borghesi Eugene Clark Donna Cook Emmanuel D'Humieres Vasilios Dimitriou Brendan Dromey Michael Ehret Ioannis Fitilis Anastasios Grigoriadis Satya Kar Evaggelos Kaselouris Ondrej Klimo Michel Koenig Kyriaki Kosma George Koundourakis Milan Kucharik Aveen Lavery Jiri Limpouch Yannis Orphanos Nektarios A.Papadogiannis Stelios Petrakis Dave Riley Maria Serena Rivetta Laura Tejada Pascual Joao Jorge Santos Alexandros Skoulakis Ioannis Tazes Vladimir Tikhonchuk Jocelain Trela Calliope Tsitou Luca Volpe Steven White Mark Yeung Michael Tatarakis 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2019年第2期22-26,共5页
The Erasmus Plus programme’Innovative Education and Training in high power laser plasmas’,otherwise known as PowerLaPs,is described.The PowerLaPs programme employs an innovative paradigm in that it is a multi-centre... The Erasmus Plus programme’Innovative Education and Training in high power laser plasmas’,otherwise known as PowerLaPs,is described.The PowerLaPs programme employs an innovative paradigm in that it is a multi-centre programme where teaching takes place in five separate institutes with a range of different aims and styles of delivery.The’in class’time is limited to four weeks a year,and the programme spans two years.PowerLaPs aims to train students from across Europe in theoretical,applied and laboratory skills relevant to the pursuit of research in laserplasma interaction physics and inertial confinement fusion(ICF).Lectures are intermingled with laboratory sessions and continuous assessment activities.The programme,which is led by workers from the Technological Educational Institute(TEI)of Crete,and supported by co-workers from the Queen’s University Belfast,the University of Bordeaux,the Czech Technical-University in Prague,Ecole Polytechnique,the University of Ioannina,the University of Salamanca and the University of York,has just completed its first year.Thus far three Learning Teaching Training(LTT)activities have been held,at the Queen’s University Belfast,the University of Bordeaux and the Centre for Plasma Physics and Lasers(CPPL)of TEI Crete.The last of these was a two-week long Intensive Programme(IP),while the activities at the other two universities were each five days in length.Thus far work has concentrated upon training in both theoretical and experimental work in plasma physics,high power laser-matter interactions and high energy density physics.The nature of the programme will be described in detail and some metrics relating to the activities carried out to date will be presented. 展开更多
关键词 higher education inertial confinement fusion laser-plasma interactions post-graduate education
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Innovative education and training in high power laser plasmas(PowerLaPs) for plasma physics, high power laser matter interactions and high energy density physics: experimental diagnostics and simulations
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作者 John Pasley Georgia Andrianaki +41 位作者 Andreas Baroutsos Dimitri Batani Emmanouil PBenis Andrea Ciardi Donna Cook Vasilios Dimitriou Brendan Dromey Ioannis Fitilis Giancarlo Gatti Anastasios Grigoriadis Marine Huault Jose Antonio Pérez Hernández Evaggelos Kaselouris Ondrej Klimo Michel Koenig George Koundourakis Milan Kucharik Jiri Limpouch Richard Liska Carlos Salgado Lopez Sophia Malko Susana Olmos-Miguelanez Yannis Orphanos Valeria Ospina Nektarios APapadogiannis Stelios Petrakis Jan Psikal Maria Serena Rivetta Maria-ose Rodriguez-Conde Joao Jorge Santos Milan Sinor Alexandros Skoulakis Ioannis Tazes Laura Tejada Pascual Calliope Tsitou Pavel Vachal Luca Volpe Jiri Vyskocil Steven White Mark Yeung Ghassan Zerouli Michael Tatarakis 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2020年第1期30-36,共7页
The second and final year of the Erasmus Plus programme’Innovative Education and Training in high power laser plasmas’,otherwise known as PowerLaPs,is described.The PowerLaPs programme employs an innovative paradigm... The second and final year of the Erasmus Plus programme’Innovative Education and Training in high power laser plasmas’,otherwise known as PowerLaPs,is described.The PowerLaPs programme employs an innovative paradigm in that it is a multi-centre programme,where teaching takes place in five separate institutes with a range of different aims and styles of delivery.The’in-class’time is limited to 4 weeks a year,and the programme spans 2 years.PowerLaPs aims to train students from across Europe in theoretical,applied and laboratory skills relevant to the pursuit of research in laser plasma interaction physics and inertial confinement fusion.Lectures are intermingled with laboratory sessions and continuous assessment activities.The programme,which is led by workers from the Hellenic Mediterranean University and supported by co-workers from the Queen’s University Belfast,the University of Bordeaux,the Czech Technical University in Prague,Ecole Polytechnique,the University of Ioannina,the University of Salamanca and the University of York,has just finished its second and final year.Six Learning Teaching Training activities have been held at the Queen’s University Belfast,the University of Bordeaux,the Czech Technical University,the University of Salamanca and the Institute of Plasma Physics and Lasers of the Hellenic Mediterranean University.The last of these institutes hosted two 2-week-long Intensive Programmes,while the activities at the other four universities were each 5 days in length.In addition,a’Multiplier Event’was held at the University of Ioannina,which will be briefly described.In this second year,the work has concentrated on training in both experimental diagnostics and simulation techniques appropriate to the study of plasma physics,high power laser matter interactions and high energy density physics.The nature of the programme will be described in detail,and some metrics relating to the activities carried out will be presented.In particular,this paper will focus on the overall assessment of the programme. 展开更多
关键词 laser plasma interactions postgraduate education
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Spatial characterization of debris ejection from the interaction of a tightly focused PW-laser pulse with metal targets 被引量:1
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作者 I.-M.Vladisavlevici C.Vlachos +24 位作者 J.-L.Dubois D.Haddock S.Astbury A.Huerta S.Agarwal H.Ahmed J.I.Apinaniz M.Cernaianu M.Gugiu M.Krupka R.Lera A.Morabito D.Sangwan D.Ursescu A.Curcio N.Fefeu J.A.Perez-Hernandez T.Vacek P.Vicente N.Woolsey G.Gatti M.D.Rodriguez-Frias J.J.Santos P.W.Bradford M.Ehret 《High Power Laser Science and Engineering》 2025年第2期129-139,共11页
We present a novel scheme for rapid quantitative analysis of debris generated during experiments with solid targets following relativistic laser–plasma interaction at high-power laser facilities.Results are supported... We present a novel scheme for rapid quantitative analysis of debris generated during experiments with solid targets following relativistic laser–plasma interaction at high-power laser facilities.Results are supported by standard analysis techniques.Experimental data indicate that predictions by available modelling for non-mass-limited targets are reasonable,with debris of the order of hundreds ofμg per shot.We detect for the first time two clearly distinct types of debris emitted from the same interaction.A fraction of the debris is ejected directionally,following the target normal(rear and interaction side).The directional debris ejection towards the interaction side is larger than on the side of the target rear.The second type of debris is characterized by a more spherically uniform ejection,albeit with a small asymmetry that favours ejection towards the target rear side. 展开更多
关键词 debris ejection high-power laser relativistic laser-plasma interaction
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An investigation of the emittance of escaping fast electron beams from planar and nanowire targets
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作者 E.J.Hume P.Köster +12 位作者 F.Baffigi F.Brandi D.Calestani G.Cristoforetti L.Fulgentini L.Labate A.Marasciulli S.Morris D.Palla M.Salvadori M.Villani L.A.Gizzi K.L.Lancaster 《High Power Laser Science and Engineering》 2025年第2期8-17,共10页
Fast electron generation and transport in high-intensity laser–solid interactions induces X-ray emission and drives ion acceleration.Effective production of these sources hinges on an efficient laser absorption into ... Fast electron generation and transport in high-intensity laser–solid interactions induces X-ray emission and drives ion acceleration.Effective production of these sources hinges on an efficient laser absorption into the fast electron population and control of divergence as the beam propagates through the target.Nanowire targets can be employed to increase the laser absorption,but it is not yet clear how the fast electron beam properties are modified.Here we present novel measurements of the emittance of the exiting fast electron beam from irradiated solid planar and nanowire targets via a pepper-pot diagnostic.The measurements indicate a greater fast electron emittance is obtained from nanowire targets.Two-dimensional particle-in-cell simulations support this conclusion,revealing beam defocusing at the wire–substrate boundary,a higher fast electron temperature and transverse oscillatory motion around the wires. 展开更多
关键词 EMITTANCE fast electrons FEMTOSECOND PARTICLE-IN-CELL pepper-pot
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A Bayesian framework to investigate radiation reaction in strong fields
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作者 Eva E.Los Christopher Arran +6 位作者 Elias Gerstmayr Matthew J.V.Streeter Brendan Kettle Zulfikar Najmudin Christopher P.Ridgers Gianluca Sarri Stuart P.D.Mangles 《High Power Laser Science and Engineering》 2025年第2期103-122,共20页
Recent experiments aiming to measure phenomena predicted by strong-field quantum electrodynamics(SFQED)have done so by colliding relativistic electron beams and high-power lasers.In such experiments,measurements of co... Recent experiments aiming to measure phenomena predicted by strong-field quantum electrodynamics(SFQED)have done so by colliding relativistic electron beams and high-power lasers.In such experiments,measurements of collision parameters are not always feasible.However,precise knowledge of these parameters is required to accurately test SFQED.Here,we present a novel Bayesian inference procedure that infers collision parameters that could not be measured on-shot.This procedure is applicable to all-optical non-linear Compton scattering experiments investigating radiation reaction.The framework allows multiple diagnostics to be combined self-consistently and facilitates the inclusion of known information pertaining to the collision parameters.Using this Bayesian analysis,the relative validity of the classical,quantum-continuous and quantum-stochastic models of radiation reaction was compared for several test cases,which demonstrates the accuracy and model selection capability of the framework and highlight its robustness if the experimental values of fixed parameters differ from their values in the models. 展开更多
关键词 Bayesian inference high-power laser radiation reaction strong-field quantum electrodynamics
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Laser wakefield accelerator modelling with variational neural networks 被引量:5
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作者 M.J.V.Streeter C.Colgan +23 位作者 C.C.Cobo C.Arran E.E.Los R.Watt N.Bourgeois L.Calvin J.Carderelli N.Cavanagh S.J.D.Dann R.Fitzgarrald E.Gerstmayr A.S.Joglekar B.Kettle P.Mckenna C.D.Murphy Z.Najmudin P.Parsons Q.Qian P.P.Rajeev C.P.Ridgers D.R.Symes A.G.R.Thomas G.Sarri S.P.D.Mangles 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2023年第1期67-74,共8页
A machine learning model was created to predict the electron spectrum generated by a GeV-class laser wakefield accelerator.The model was constructed from variational convolutional neural networks,which mapped the resu... A machine learning model was created to predict the electron spectrum generated by a GeV-class laser wakefield accelerator.The model was constructed from variational convolutional neural networks,which mapped the results of secondary laser and plasma diagnostics to the generated electron spectrum.An ensemble of trained networks was used to predict the electron spectrum and to provide an estimation of the uncertainty of that prediction.It is anticipated that this approach will be useful for inferring the electron spectrum prior to undergoing any process that can alter or destroy the beam.In addition,the model provides insight into the scaling of electron beam properties due to stochastic fluctuations in the laser energy and plasma electron density. 展开更多
关键词 laser plasma interactions particle acceleration neural networks machine learning
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EMP control and characterization on high-power laser systems 被引量:6
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作者 P.Bradford N.C.Woolsey +25 位作者 G.G.Scott G.Liao H.Liu Y.Zhang B.Zhu C.Armstrong S.Astbury C.Brenner P.Brummitt F.Consoli I.East R.Gray D.Haddock E Huggard E J.R.Jones E.Montgomery I.Musgrave E Oliveira D.R.Rusby C.Spindloe B.Summers E.Zemaityte Z.Zhang Y.Li P.McKenna D.Neely 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第2期55-62,共8页
Giant electromagnetic pulses(EMP) generated during the interaction of high-power lasers with solid targets can seriously degrade electrical measurements and equipment. EMP emission is caused by the acceleration of hot... Giant electromagnetic pulses(EMP) generated during the interaction of high-power lasers with solid targets can seriously degrade electrical measurements and equipment. EMP emission is caused by the acceleration of hot electrons inside the target, which produce radiation across a wide band from DC to terahertz frequencies. Improved understanding and control of EMP is vital as we enter a new era of high repetition rate, high intensity lasers(e.g. the Extreme Light Infrastructure).We present recent data from the VULCAN laser facility that demonstrates how EMP can be readily and effectively reduced. Characterization of the EMP was achieved using B-dot and D-dot probes that took measurements for a range of different target and laser parameters. We demonstrate that target stalk geometry, material composition, geodesic path length and foil surface area can all play a significant role in the reduction of EMP. A combination of electromagnetic wave and 3 D particle-in-cell simulations is used to inform our conclusions about the effects of stalk geometry on EMP,providing an opportunity for comparison with existing charge separation models. 展开更多
关键词 high energy density physics high-power laser related laser components laser plasmas interaction target design and fabrication
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Study of backward terahertz radiation from intense picosecond laser–solid interactions using a multichannel calorimeter system 被引量:2
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作者 H. Liu G.-Q. Liao +12 位作者 Y.-H. Zhang B.-J. Zhu Z. Zhang Y.-T. Li G. G. Scott D. Rusby C. Armstrong E. Zemaityte P. Bradford N. Woolsey P. Huggard P. McKenna D. Neely 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2019年第1期47-53,共7页
A multichannel calorimeter system is designed and constructed which is capable of delivering single-shot and broadband spectral measurement of terahertz(THz) radiation generated in intense laser–plasma interactions. ... A multichannel calorimeter system is designed and constructed which is capable of delivering single-shot and broadband spectral measurement of terahertz(THz) radiation generated in intense laser–plasma interactions. The generation mechanism of backward THz radiation(BTR) is studied by using the multichannel calorimeter system in an intense picosecond laser–solid interaction experiment. The dependence of the BTR energy and spectrum on laser energy, target thickness and pre-plasma scale length is obtained. These results indicate that coherent transition radiation is responsible for the low-frequency component(<1 THz) of BTR. It is also observed that a large-scale pre-plasma primarily enhances the high-frequency component(>3 THz) of BTR. 展开更多
关键词 MULTICHANNEL CALORIMETER BACKWARD TERAHERTZ RADIATION generation mechanisms
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Observation and modelling of stimulated Raman scattering driven by an optically smoothed laser beam in experimental conditions relevant for shock ignition 被引量:1
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作者 G.Cristoforetti S.Hüller +20 位作者 P.Koester L.Antonelli S.Atzeni F.Baffigi D.Batani C.Baird N.Booth M.Galimberti K.Glize A.Héron M.Khan P.Loiseau D.Mancelli M.Notley P.Oliveira O.Renner M.Smid A.Schiavi G.Tran N.C.Woolsey L.A.Gizzi 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2021年第4期160-178,共19页
We report results and modelling of an experiment performed at the Target Area West Vulcan laser facility,aimed at investigating laser±plasma interaction in conditions that are of interest for the shock ignition s... We report results and modelling of an experiment performed at the Target Area West Vulcan laser facility,aimed at investigating laser±plasma interaction in conditions that are of interest for the shock ignition scheme in inertial confinement fusion(ICF),that is,laser intensity higher than 10^(16) W/cm^(2) impinging on a hot(T>1 keV),inhomogeneous and long scalelength pre-formed plasma.Measurements show a significant stimulated Raman scattering(SRS)backscattering(;%-20%of laser energy)driven at low plasma densities and no signatures of two-plasmon decay(TPD)/SRS driven at the quarter critical density region.Results are satisfactorily reproduced by an analytical model accounting for the convective SRS growth in independent laser speckles,in conditions where the reflectivity is dominated by the contribution from the most intense speckles,where SRS becomes saturated.Analytical and kinetic simulations well reproduce the onset of SRS at low plasma densities in a regime strongly affected by non-linear Landau damping and by filamentation of the most intense laser speckles.The absence of TPD/SRS at higher densities is explained by pump depletion and plasma smoothing driven by filamentation.The prevalence of laser coupling in the low-density profile justifies the low temperature measured for hot electrons(7-12 keV),which is well reproduced by numerical simulations. 展开更多
关键词 plasma simulations shock ignition stimulated Raman scattering inertial confinement fusion laser-plasma interaction
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Laser produced electromagnetic pulses: generation, detection and mitigation 被引量:9
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作者 Fabrizio Consoli Vladimir TTikhonchuk +32 位作者 Matthieu Bardon Philip Bradford David CCarroll Jakub Cikhardt Mattia Cipriani Robert JClarke Thomas ECowan Colin NDanson Riccardo De Angelis Massimo De Marco Jean-Luc Dubois Bertr Etchessahar Alejro Laso Garcia David IHillier Ales Honsa Weiman Jiang Viliam Kmetik Josef Krása Yutong Li FredériéLubrano Paul McKenna Josefine Metzkes-Ng Alexre Poyé Irene Prencipe Piotr Ra¸czka Rol ASmith Roman Vrana Nigel CWoolsey Egle Zemaityte Yihang Zhang Zhe Zhang Bernhard Zielbauer David Neely 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2020年第2期88-146,共59页
This paper provides an up-to-date review of the problems related to the generation,detection and mitigation of strong electromagnetic pulses created in the interaction of high-power,high-energy laser pulses with diffe... This paper provides an up-to-date review of the problems related to the generation,detection and mitigation of strong electromagnetic pulses created in the interaction of high-power,high-energy laser pulses with different types of solid targets.It includes new experimental data obtained independently at several international laboratories.The mechanisms of electromagnetic field generation are analyzed and considered as a function of the intensity and the spectral range of emissions they produce.The major emphasis is put on the GHz frequency domain,which is the most damaging for electronics and may have important applications.The physics of electromagnetic emissions in other spectral domains,in particular THz and MHz,is also discussed.The theoretical models and numerical simulations are compared with the results of experimental measurements,with special attention to the methodology of measurements and complementary diagnostics.Understanding the underlying physical processes is the basis for developing techniques to mitigate the electromagnetic threat and to harness electromagnetic emissions,which may have promising applications. 展开更多
关键词 electromagnetic pulses high-power lasers DIAGNOSTICS mitigation techniques
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