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Commissioning of the 1 PW experimental area at ELI-NP using a short focal parabolic mirror for proton acceleration
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作者 M.O.Cernaianu P.Ghenuche +34 位作者 F.Rotaru L.Tudor O.Chalus C.Gheorghiu D.C.Popescu M.Gugiu S.Balascuta A.Magureanu M.Tataru V.Horny B.Corobean I.Dancus A.Alincutei T.Asavei B.Diaconescu L.Dinca D.B.Dreghici D.G.Ghita C.Jalba V.Leca A.M.Lupu V.Nastasa F.Negoita M.Patrascoiu F.Schimbeschi D.Stutman C.Ticos D.Ursescu A.Arefiev P.Tomassini V.Malka S.Gales K.A.Tanaka C.A.Ur D.Doria 《Matter and Radiation at Extremes》 2025年第2期35-49,共15页
High-power laser systems have opened new frontiers in scientifi research and have revolutionized various scientifi fields offering unprecedented capabilities for understanding fundamental physics and allowing unique a... High-power laser systems have opened new frontiers in scientifi research and have revolutionized various scientifi fields offering unprecedented capabilities for understanding fundamental physics and allowing unique applications.This paper details the successful commissioning of the 1 PW experimental area at the Extreme Light Infrastructure–Nuclear Physics(ELI-NP)facility in Romania,using both of the available laser arms.The experimental setup featured a short focal parabolic mirror to accelerate protons through the target normal sheath acceleration mechanism.Detailed experiments were conducted using various metallic and diamond-like carbon targets to investigate the dependence of the proton acceleration on different laser parameters.Furthermore,the paper discusses the critical role of the laser temporal profil in optimizing proton acceleration,supported by hydrodynamic simulations that are correlated with experimental outcomes.The finding underscore the potential of the ELI-NP facility to advance research in laser–plasma physics and contribute significantl to high-energy physics applications.The results of this commissioning establish a strong foundation for experiments by future users. 展开更多
关键词 nuclear physics scientifi fields short focal parabolic mirror extreme light infrastructure laser plasma physics scientifi research proton acceleration understanding fundamental physics
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Design of a compact beam transport system for laser-driven proton therapy
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作者 Yangfan LI Xiaofei SHEN +1 位作者 Yilin YAO Bin QIAO 《Plasma Science and Technology》 2025年第1期1-6,共6页
We put forward a new design of a compact beam transport system for intense laser-driven proton therapy,where instead of using conventional pulsed solenoids,our design relies on a helical coil irradiated by a nanosecon... We put forward a new design of a compact beam transport system for intense laser-driven proton therapy,where instead of using conventional pulsed solenoids,our design relies on a helical coil irradiated by a nanosecond laser pulse to generate strong magnetic fields for focusing protons.A pair of dipole magnets and apertures are employed to further filter protons with large divergences and low energies.Our numerical studies combine particle-in-cell simulations for laser-plasma interaction to generate high-energy monoenergetic proton beams,finite element analysis for evaluating the magnetic field distribution inside the coil,and MonteCarlo simulations for beam transport and energy deposition.Our results show that with this design,a spread-out Bragg peak in a range of several centimeters to a deep-seated tumor with a dose of approximately 16.5 cGy and fluctuation around 2% can be achieved.The instantaneous dose rate reaches up to 10^(9)Gy/s,holding the potential for future FLASH radiotherapy research. 展开更多
关键词 intense laser-plasma interaction laser-driven ion acceleration laser-driven proton acceleration PARTICLE-IN-CELL proton radiotherapy
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DTL cavity design and beam dynamics for a TAC linear proton accelerator
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作者 A. Caliskan M. Yilmaz 《Chinese Physics C》 SCIE CAS CSCD 2012年第2期167-172,共6页
A 30 mA drift tube linac (DTL) accelerator has been designed using SUPERFISH code in the energy range of 3-55 MeV in the framework of the Turkish Accelerator Center (TAC) project. Optimization criteria in cavity d... A 30 mA drift tube linac (DTL) accelerator has been designed using SUPERFISH code in the energy range of 3-55 MeV in the framework of the Turkish Accelerator Center (TAC) project. Optimization criteria in cavity design are effective shunt impedance (ZTT), transit-time factor and electrical breakdown limit. In geometrical optimization we have aimed to increase the energy gain in each RF gap of the DTL cells by maximizing the effective shunt impedance (ZTT) and the transit-time factor. Beam dynamics studies of the DTL accelerator have been performed using beam dynamics simulation codes of PATH and PARMILA. The results of both codes have been compared. In the beam dynamical studies, the rms values of beam emittance have been taken into account and a low emittance growth in both x and y directions has been attempted. 展开更多
关键词 proton accelerator cavity design beam dynamics
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Laser-plasma acceleration of quasi-monoenergetic carbon ion beams with the“peeler”scheme
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作者 Bogdan Corobean Vojtech Horny +4 位作者 Alexander Pukhov Emmanuel d’Humieres Domenico Doria Calin Alexandru Ur Paolo Tomassini 《Matter and Radiation at Extremes》 2025年第5期28-37,共10页
We introduce a scheme aiming at the generation of quasi-monochromatic carbon ion bunches from laser-solid interaction.The proposed scheme is an extension of the“peeler”acceleration originally proposed for proton acc... We introduce a scheme aiming at the generation of quasi-monochromatic carbon ion bunches from laser-solid interaction.The proposed scheme is an extension of the“peeler”acceleration originally proposed for proton acceleration,which involves irradiating the narrow(submicrometer)side of a tape target.This results in the generation of a surface plasma wave and the subsequent acceleration of a proton bunch with high peak energy,quasi-monochromaticity,low energy bandwidth,and low divergence by the electrostatic field induced at the target rear.Up to now,the higher-Z(e.g.,carbon)ion bunches obtained with the peeler scheme have been found to exhibit an exponentially decaying thermal-like energy spectrum.To achieve a low energy bandwidth,we place a mass-limited carbon structure at the rear of the target.Using 3D particle-in-cell simulations,we show that a quasi-monochromatic carbon bunch can indeed be obtained.With a multi-PW laser pulse,10^(8) carbon ions with peak energy~110 MeV/u and with a divergence of 20° in the vertical plane and~1° in the horizontal plane can be generated.The quasi-monochromaticity,together with the low duration of the beam and in combination with the versatility of high-power laser facilities,should make this scheme attractive for practical applications such as heavy ion cancer therapy and higher-resolution diagnostics of extreme plasma states. 展开更多
关键词 carbon ion quasi monochromatic carbon ion beams electrostatic fie acceleration proton bunch generation surface plasma wave high power laser facilities tape targetthis peeler scheme
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Spatial and spectral measurement of laser-driven protons through radioactivation 被引量:1
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作者 Yin‑Ren Shou Xue‑Zhi Wu +9 位作者 Gwang‑Eun Ahn Seung Yeon Kim Seong Hoon Kim Hwang Woon Lee Jin Woo Yoon Jae Hee Sung Seong Ku Lee Xue‑Qing Yan Il Woo Choi Chang Hee Nam 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2023年第12期30-39,共10页
The simultaneous measurement of the spatial profile and spectrum of laser-accelerated protons is important for further optimization of the beam qualities and applications.We report a detailed study regarding the under... The simultaneous measurement of the spatial profile and spectrum of laser-accelerated protons is important for further optimization of the beam qualities and applications.We report a detailed study regarding the underlying physics and regular procedure of such a measurement through the radioactivation of a stack composed of aluminum,copper,and CR-39 plates as well as radiochromic films(RCFs).After being radioactivated,the copper plates are placed on imaging plates(IPs)to detect the positrons emitted by the reaction products through contact imaging.The spectrum and energy-dependent spatial profile of the protons are then obtained from the IPs and confirmed by the measured ones from the RCFs and CR-39 plates.We also discuss the detection range,influence of electrons,radiation safety,and spatial resolution of this measurement.Finally,insights regarding the extension of the current method to online measurements and dynamic proton imaging are also provided. 展开更多
关键词 Laser-driven proton acceleration proton-induced nuclear reaction Radioactivation measurement Contact imaging
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Laser radiation pressure proton acceleration in gaseous target 被引量:1
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作者 V.K.Tripathi Tung-Chang Liu Xi Shao 《Matter and Radiation at Extremes》 SCIE EI CAS 2017年第5期256-262,共7页
An analytical model for hole boring proton acceleration by a circularly-polarized CO_(2) laser pulse in a gas jet is developed.The plasma density profile near the density peak is taken to be rectangular,with inner reg... An analytical model for hole boring proton acceleration by a circularly-polarized CO_(2) laser pulse in a gas jet is developed.The plasma density profile near the density peak is taken to be rectangular,with inner region thickness l around a laser wavelength and density 10%above the critical,while the outside density is 10%below the critical.On the rear side,plasma density falls off rapidly to a small value.The laser suffers strong reflection from the central region and,at normalized amplitude a _(0)≥1,creates a double layer.The space charge field of the double layer,moving with velocity v_(f)z,reflects up-stream protons to 2v_(f) velocity,incurring momentum loss at a rate comparable to radiation pressure.Reflection occurs for v_(f)≤ω_(p)√z_(f)lm/m_(p),where m and m_(p) are the electron and proton masses,z_(f) is the distance traveled by the compressed electron layer and u p is the plasma frequency.For Gaussian temporal profile of the laser and parabolic density profile of the upstream plasma,the proton energy distribution is narrowly peaked. 展开更多
关键词 Laser-driven acceleration Radiation pressure proton acceleration Relativistic plasmas
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Generation of fast protons in moderate-intensity laser-plasma interaction from rear sheath 被引量:1
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作者 谭志新 黄永盛 +6 位作者 兰小飞 路建新 段晓礁 王雷剑 杨大为 郭士伦 王乃彦 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第5期399-405,共7页
Forward fast protons are generated by the moderate-intensity laser-foil interaction. Protons with maximum energy 190 keV are measured by using magnetic spectrometer and CR-39 solid state track detectors along the dire... Forward fast protons are generated by the moderate-intensity laser-foil interaction. Protons with maximum energy 190 keV are measured by using magnetic spectrometer and CR-39 solid state track detectors along the direction normal to the rear surface. The experimental results are also modeled by the paxticle-in-cell method, investigating the timevarying electron temperature and the rear sheath field. The temporal and spatial structure of the sheath electrical field, revealed in the simulation, suggests that these protons are accelerated by target normal sheath acceleration (TNSA) mechanism. 展开更多
关键词 laser proton acceleration target normal sheath acceleration
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Proton Beam Generated by Multi-Lasers Interaction with Rear-Holed Target
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作者 杨鹏 范大鹏 李玉晓 《Communications in Theoretical Physics》 SCIE CAS CSCD 2017年第3期322-326,共5页
Multi-lasers are proposed to enhance the proton acceleration in laser plasma interaction. A rear-holed target is illuminated by three lasers from different directions. The scheme is demonstrated by two-dimensional par... Multi-lasers are proposed to enhance the proton acceleration in laser plasma interaction. A rear-holed target is illuminated by three lasers from different directions. The scheme is demonstrated by two-dimensional particlein-cell simulations. The electron cloud shape is controlled well and the electron density is improved significantly. The electrons accelerated by the three lasers induce an enhanced target normal sheath acceleration(TNSA) which suppresses the proton beam divergence and improves the maximum proton energy. The maximum proton energy is 22.9 Me V, which increased significantly than that of a single-laser target interaction. Meanwhile, the average divergence angle(22.3?) is reduced. The dependence of the proton beam on the length of sidewall is investigated in detail and the optimal length is obtained. 展开更多
关键词 PIC simulation proton acceleration rear-holed target multi-lasers
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Proton acceleration from picosecond-laser interaction with a hydrocarbon target
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作者 杨宇晨 黄太武 +2 位作者 蒋轲 郁明阳 周沧涛 《Plasma Science and Technology》 SCIE EI CAS CSCD 2023年第2期77-85,共9页
As an intense picosecond laser pulse irradiates a hydrocarbon target,the protons therein can be accelerated by the radiation pressure as well as the sheath field behind the target.We investigate the effect of the lase... As an intense picosecond laser pulse irradiates a hydrocarbon target,the protons therein can be accelerated by the radiation pressure as well as the sheath field behind the target.We investigate the effect of the laser and hydrocarbon target parameters on proton acceleration with two/threedimensional particle-in-cell simulations.It is found that the resulting two-ion species plasma can generate a multiple peaked charge-separation field that accelerates the protons.In particular,a smaller carbon-to-hydrogen ratio,as well as the thinner and/or lower density of the target,leads to a larger sheath field and thus proton beams with a larger cutoff energy and smoother energy spectrum.These results may be useful in achieving high-flux quasi-monoenergetic proton beams by properly designing the hydrocarbon target. 展开更多
关键词 picosecond laser pulse proton acceleration multiple peaked charge-separation field carbon-to-hydrogen ratio
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Effect of Plasma Density on Proton Acceleration in a Rectangular Waveguide
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作者 Hitendra K.Malik 《Plasma Science and Technology》 SCIE EI CAS CSCD 2004年第5期2456-2458,共3页
Analytical studies are made for the proton acceleration during its motion inthe fields of the fundamental mode excited by a high-intensity microwave in a rectangular waveguide,when the proton is injected along the pro... Analytical studies are made for the proton acceleration during its motion inthe fields of the fundamental mode excited by a high-intensity microwave in a rectangular waveguide,when the proton is injected along the propagating direction of the mode. The trajectory of theproton is calculated and the expressions are obtained for the energy gain and acceleration gradienttogether with the effects of plasma density, microwave frequency and waveguide width. Energy gain of181 keV is attained by a 50 keV proton in a 0.015m x 0.020 m evacuated waveguide when 0.5 x 10^(10)W/m^2 microwave intensity is used. However, this gain increases to 1387 keV when the waveguide isfilled with a plasma having a density of 1.0 x 10^(19) m^(-3). Higher acceleration gradients areachieved when the proton is injected with a higher initial energy and also when the microwaveintensity increases. The effects of the microwave frequency and width of the waveguide are found todecrease the acceleration gradient. 展开更多
关键词 proton acceleration MICROWAVE fundamental mode
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Experimental and numerical investigation of the impact of helical coil targets on laser-driven proton and carbon accelerations
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作者 C.L.C.Lacoste E.Catrix +10 位作者 S.Vallières A.Hirsch-Passicos T.Guilberteau M.Lafargue J.Lopez I.Manek-Hönninger S.Fourmaux D.Raffestin E.d’Humières P.Antici M.Bardon 《Matter and Radiation at Extremes》 2025年第3期98-105,共8页
Laser-driven ion acceleration,as produced by interaction of a high-intensity laser with a target,is a growing field of interest.One of the current challenges is to enhance the acceleration process,i.e.,to increase the... Laser-driven ion acceleration,as produced by interaction of a high-intensity laser with a target,is a growing field of interest.One of the current challenges is to enhance the acceleration process,i.e.,to increase the produced ion energy and the ion number and to shape the energy distribution for future applications.In this paper,we investigate the effect of helical coil(HC)targets on the laser-matter interaction process using a 150 TW laser.We demonstrate that HC targets significantly enhance proton acceleration,improving energy bunching and beam focusing and increasing the cutoff energy.For the first time,we extend this analysis to carbon ions,revealing a marked reduction in the number of low-energy carbon ions and the potential for energy bunching and post-acceleration through an optimized HC design.Simulations using the particle-in-cell code SOPHIE confirm the experimental results,providing insights into the current propagation and ion synchronization mechanisms in HCs.Our findings suggest that HC targets can be optimized for multispecies ion acceleration. 展开更多
关键词 helical coil targets laser matter interaction ion energy distribution proton accelera carbon ion acceleration proton acceleration enhance acceleration processieto shape energy distribution
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Dynamic study of compressed electron layer driven by linearly polarized laser
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作者 王凤超 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第5期172-175,共4页
The dynamics of the compressed electron layer(CEL) are investigated when a linearly polarized(LP) laser pulse irradiates a plasma target. The turbulent motion of the CEL is investigated by a simple model, which is... The dynamics of the compressed electron layer(CEL) are investigated when a linearly polarized(LP) laser pulse irradiates a plasma target. The turbulent motion of the CEL is investigated by a simple model, which is verified by particlein-cell(PIC) simulations. It is found that the compressed layer disperses in a few cycles of the laser duration, because the CEL comes back with a large velocity in the opposite direction of the laser incident. A larger wavelength laser can be used to tailor the proton beam by reducing the turbulence of the CEL in the region of the LP laser acceleration. 展开更多
关键词 linearly polarized laser pulse proton acceleration compressed electron layer particle-in-cell simulation
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10 GeV proton generation driven by 5 PW light spring pulses
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作者 Yi Guo Xiaomei Zhang +1 位作者 Baifei Shen Toshiki Tajima 《High Power Laser Science and Engineering》 CSCD 2024年第6期39-47,共9页
Proton acceleration in a near-critical-density gas driven by a light spring(LS) pulse with a helical structure in its intensity profile is investigated using three-dimensional particle-in-cell simulations. Compared wi... Proton acceleration in a near-critical-density gas driven by a light spring(LS) pulse with a helical structure in its intensity profile is investigated using three-dimensional particle-in-cell simulations. Compared with other pulse modes with the same laser power, such as the Gaussian pulse or the donut Laguerre–Gaussian(LG) pulse, the LS structure significantly enhances the peak intensity and drives a stronger longitudinal acceleration field and transverse focusing field. Both the high intensity and helical structure of the LS pulse contribute to the formation of a bubble-like structure with a fine electron column on the axis, which is critical for stable proton acceleration. Therefore, it is very promising to obtain ultra-high-energy protons using LS pulses with a relatively lower power. For example, by using LS pulses with the same power of 4.81 PW, the proton in the gas can be accelerated up to 8.7 Ge V, and the witness proton can be accelerated to10.6 Ge V from 0.11 Ge V, which shows the overwhelming advantage over the Gaussian and LG pulse cases. 展开更多
关键词 10 GeV light spring proton acceleration WAKEFIELD
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Real-time bremsstrahlung detector as a monitoring tool for laser–plasma proton acceleration
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作者 Valeria Istokskaia Benoit Lefebvre +10 位作者 Roberto Versaci Dragana B.Dreghici Domenico Doria Filip Grepl Veronika Olšovcová Francesco Schillaci Stanislav Stancek Maksym Tryus Andriy Velyhan Daniele Margarone Lorenzo Giuffrida 《High Power Laser Science and Engineering》 CSCD 2024年第5期28-38,共11页
Real-time evaluation of laser-driven byproducts is crucial for state-of-the-art facilities operating at high repetition rates.This work presents real-time measurements of hard X-rays(bremsstrahlung radiation) generate... Real-time evaluation of laser-driven byproducts is crucial for state-of-the-art facilities operating at high repetition rates.This work presents real-time measurements of hard X-rays(bremsstrahlung radiation) generated from the interaction of high-intensity laser pulses with solid targets in the target normal sheath acceleration regime using a scintillator stack detector. The detector offers insights into the effectiveness of laser–plasma interaction through measured fiuctuations in bremsstrahlung radiation temperature and scintillation light yield on a shot-to-shot basis. Moreover, a strong correlation of the bremsstrahlung measurements(i.e., temperature and yield) with the cutoff energy of laser-driven protons was observed. The scintillator stack detector serves not only as a diagnostic for online monitoring of the laser–plasma interaction but also as a promising tool for estimating proton energy fiuctuations in a non-disruptive manner, which is particularly important when direct proton source characterization is impractical, for example, during experiments aimed at irradiating user samples with the accelerated proton beam. 展开更多
关键词 bremsstrahlung radiation laser-driven proton acceleration real-time diagnostics scintillator stack detector
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Accelerated protons with energies up to 70 MeV based on the optimized SG-Ⅱ Peta-watt laser facility 被引量:3
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作者 H.H.An W.Wang +24 位作者 J.Xiong C.Wang X.Pan X.P.Ouyang S.Jiang Z.Y.Xie P.P.Wang Y.L.Yao N.Hua Y.Wang Z.C.Jiang Q.Xiao F.C.Ding Y.T.Wan X.Liu R.R.Wang Z.H.Fang P.Q.Yang Y.E.Jiang P.Z.Zhang B.Q.Zhu J.R.Sun B.Qiao A.L.Lei J.Q.Zhu 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2023年第5期127-136,共10页
The target backsheath field acceleration mechanism is one of the main mechanisms of laser-driven proton acceleration(LDPA)and strongly depends on the comprehensive performance of the ultrashort ultra-intense lasers us... The target backsheath field acceleration mechanism is one of the main mechanisms of laser-driven proton acceleration(LDPA)and strongly depends on the comprehensive performance of the ultrashort ultra-intense lasers used as the driving sources.The successful use of the SG-II Peta-watt(SG-II PW)laser facility for LDPA and its applications in radiographic diagnoses have been manifested by the good performance of the SG-II PW facility.Recently,the SG-II PW laser facility has undergone extensive maintenance and a comprehensive technical upgrade in terms of the seed source,laser contrast and terminal focus.LDPA experiments were performed using the maintained SG-II PW laser beam,and the highest cutoff energy of the proton beam was obviously increased.Accordingly,a double-film target structure was used,and the maximum cutoff energy of the proton beam was up to 70 MeV.These results demonstrate that the comprehensive performance of the SG-II PW laser facility was improved significantly. 展开更多
关键词 laser-driven proton acceleration SG-II Peta-watt laser target normal sheath acceleration
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Enhancement of the laser-driven proton source at PHELIX 被引量:2
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作者 J.Hornung Y.Zobus +8 位作者 P.Boller C.Brabetz U.Eisenbarth T.Kühl Zs.Major J.B.Ohl M.Zepf B.Zielbauer V.Bagnoud 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2020年第2期153-160,共8页
We present a study of laser-driven ion acceleration with micrometre and sub-micrometre thick targets,which focuses on the enhancement of the maximum proton energy and the total number of accelerated particles at the P... We present a study of laser-driven ion acceleration with micrometre and sub-micrometre thick targets,which focuses on the enhancement of the maximum proton energy and the total number of accelerated particles at the PHELIX facility.Using laser pulses with a nanosecond temporal contrast of up to 10^-12 and an intensity of the order of 1020 W/cm^2,proton energies up to 93 MeV are achieved.Additionally,the conversion efficiency at 45°incidence angle was increased when changing the laser polarization to p,enabling similar proton energies and particle numbers as in the case of normal incidence and s-polarization,but reducing the debris on the last focusing optic. 展开更多
关键词 high power laser proton acceleration secondary sources
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OCTOPOD:single-bunch tomography for angular-spectral characterization of laser-driven protons 被引量:1
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作者 M.Reimold S.Assenbaum +16 位作者 E.Beyreuther E.Bodenstein F.-E.Brack C.Eisenmann F.Englbrecht F.Kroll F.Lindner U.Masood J.Pawelke U.Schramm M.Schneider M.Sobiella M.E.P.Umlandt M.Vescovi K.Zeil T.Ziegler J.Metzkes-Ng 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2023年第6期16-28,共13页
Laser-plasma accelerated(LPA)proton bunches are now applied for research fields ranging from ultra-high-dose-rate radiobiology to material science.Yet,the capabilities to characterize the spectrally and angularly broa... Laser-plasma accelerated(LPA)proton bunches are now applied for research fields ranging from ultra-high-dose-rate radiobiology to material science.Yet,the capabilities to characterize the spectrally and angularly broad LPA bunches lag behind the rapidly evolving applications.The OCTOPOD translates the angularly resolved spectral characterization of LPA proton bunches into the spatially resolved detection of the volumetric dose distribution deposited in a liquid scintillator.Up to 24 multi-pinhole arrays record projections of the scintillation light distribution and allow for tomographic reconstruction of the volumetric dose deposition pattern,from which proton spectra may be retrieved.Applying the OCTOPOD at a cyclotron,we show the reliable retrieval of various spatial dose deposition patterns and detector sensitivity over a broad dose range.Moreover,the OCTOPOD was installed at an LPA proton source,providing real-time data on proton acceleration performance and attesting the system optimal performance in the harsh laser-plasma environment. 展开更多
关键词 laser-plasma acceleration of protons proton detector tomographic reconstruction
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Design and construction of the first prototype ionization chamber for CSNS and PA beam loss monitor (BLM) system 被引量:2
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作者 徐美杭 田建民 +3 位作者 陈昌 陈元柏 徐韬光 陆双桐 《Chinese Physics C》 SCIE CAS CSCD 2009年第2期123-126,共4页
Design and construction of the first prototype ionization chamber for CSNS and Proton Accelerator (PA) beam loss monitor (BLM) system is reported. The low leakage current (〈0.1 pA), good plateau (≈800 V) and... Design and construction of the first prototype ionization chamber for CSNS and Proton Accelerator (PA) beam loss monitor (BLM) system is reported. The low leakage current (〈0.1 pA), good plateau (≈800 V) and linearity range up to 200 Roentgen/h are obtained in the first prototype. All of these give us good experience for further improving the ionization chamber construction. 展开更多
关键词 spallation neutron source proton accelerator beam loss monitor ionization chamber plateau curve LINEARITY
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Design of a 325 MHz half wave resonator prototype at IHEP 被引量:1
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作者 张新颖 潘卫民 +16 位作者 王光伟 徐波 赵光远 贺斐思 李中泉 马强 戴劲 陈旭 米正辉 沙鹏 林海英 王群要 刘亚萍 薛舟 黄雪芳 王牧源 孙毅 《Chinese Physics C》 SCIE CAS CSCD 2016年第8期154-160,共7页
A 325 MHzβ=0.14 superconducting half-wave resonator prototype has been developed at the Institute of High Energy Physics, Beijing, which can be applied in the low energy section of continuous wave high current proton... A 325 MHzβ=0.14 superconducting half-wave resonator prototype has been developed at the Institute of High Energy Physics, Beijing, which can be applied in the low energy section of continuous wave high current proton linear accelerators. The electromagnetic design, multipacting simulation, mechanical optimization and fabrication are introduced in detail. Test results at room temperature and 4.2 K, and a comparison between measured and simulated results, are analyzed in this paper. 展开更多
关键词 low beta HWR high beam proton accelerator vertical test
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Analysis and construction status of SG-Ⅱ 5PW laser facility 被引量:12
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作者 Jianqiang Zhu Xinglong Xie +11 位作者 Meizhi Sun Jun Kang Qingwei Yang Ailin Guo Haidong Zhu Ping Zhu Qi Gao Xiao Liang Ziruo Cui Shunhua Yang Cheng Zhang Zunqi Lin 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第2期110-122,共13页
We present a recent progress of the SG-II 5 PW facility, which designed a multi-petawatt ultrashort pulse laser based on optical parametric chirped-pulse amplification(OPCPA). The prior two optical parametric amplifie... We present a recent progress of the SG-II 5 PW facility, which designed a multi-petawatt ultrashort pulse laser based on optical parametric chirped-pulse amplification(OPCPA). The prior two optical parametric amplifiers have been accomplished and chirped pulses with an energy of 49.7 J and a full-width-at-half-maximum(FWHM) spectrum bandwidth of 85 nm have been achieved. In the PW-scale optical parametric amplification(OPA), with the pump pulse that has an energy of 118 J from the second harmonic generation of the SG-II 7 th beam, the pump-to-signal conversion efficiency is up to 41.9%, which to the best of our knowledge is the highest among all of the reported values for OPCPA systems. The compressed pulse is higher than 37 J in 21 fs(1.76 PW), and the focal spot is ~10 μm after the closed-loop corrections by the adaptive optics. Limited by the repetition of the pump laser, the SG-II 5 PW facility operates one shot per hour. It has successfully been employed for high energy physics experiments. 展开更多
关键词 conversion efficiency multi-petawatt optical parametric amplification proton acceleration ultrashort pulse
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