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Scaling of thin wire cylindrical compression with material,diameter,and laser energy after 100 fs Joule surface heating
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作者 L.Yang M.-L.Herbert +32 位作者 C.Baehtz V.Bouffetier E.Brambrink T.Dornheim N.Fefeu T.Gawne S.Goede J.Hagemann H.Hoppner L.G.Huang O.Humphries T.Kluge D.Kraus J.Lütgert J.-P.Naedler M.Nakatsutsumi A.Pelka T.R.Preston C.B.Qu S.V.Rahul L.Randolph R.Redmer M.Rehwald J.J.Santos M.Smíd U.Schramm J.-P.Schwinkendorf M.Vescovi U.Zastrau K.Zeil a.laso garcia T.Toncian T.E.Cowan 《Matter and Radiation at Extremes》 2026年第1期68-80,共13页
We present the first systematic experimental validation of return-current-driven cylindrical implosion scaling in micrometer-sized Cu and Al wires irradiated by J-class femtosecond laser pulses.Employing XFEL-based im... We present the first systematic experimental validation of return-current-driven cylindrical implosion scaling in micrometer-sized Cu and Al wires irradiated by J-class femtosecond laser pulses.Employing XFEL-based imaging with sub-micrometer spatial and femtosecond temporal resolution,supported by hydrodynamic and particle-in-cell simulations,we reveal how return current density depends precisely on wire diameter,material properties,and incident laser energy.We identify deviations from simple theoretical predictions due to geometrically influenced electron escape dynamics.These results refine and confirm the scaling laws essential for predictive modeling in high-energy-density physics and inertial fusion research. 展开更多
关键词 cylindrical implosion scaling laser energy thin wire cylindrical compression material cu al wires diameter systematic experimental validation
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ReLaX:the Helmholtz International Beamline for Extreme Fields high-intensity short-pulse laser driver for relativistic laser-matter interaction and strong-field science using the high energy density instrument at the European X-ray free electron laser fac
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作者 a.laso garcia H.Höppner +22 位作者 A.Pelka C.Bähtz E.Brambrink S.Di Dio Cafiso J.Dreyer S.Göde M.Hassan T.Kluge J.Liu M.Makita D.Möller M.Nakatsutsumi T.R.Preston G.Priebe H.-P.Schlenvoigt J.-P.Schwinkendorf M.šmíd A.-M.Talposi M.Toncian U.Zastrau U.Schramm T.E.Cowan T.Toncian 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2021年第4期144-159,共16页
High-energy and high-intensity lasers are essential for pushing the boundaries of science.Their development has allowed leaps forward in basic research areas,including laser±plasma interaction,high-energy density... High-energy and high-intensity lasers are essential for pushing the boundaries of science.Their development has allowed leaps forward in basic research areas,including laser±plasma interaction,high-energy density science,metrology,biology and medical technology.The Helmholtz International Beamline for Extreme Fields user consortium contributes and operates two high-peak-power optical lasers using the high energy density instrument at the European X-ray free electron laser(EuXFEL)facility.These lasers will be used to generate transient extreme states of density and temperature to be probed by the X-ray beam.This paper introduces the ReLaX laser,a short-pulse high-intensity Ti:Sa laser system,and discusses its characteristics as available for user experiments.It will also present the first experimental commissioning results validating its successful integration into the EuXFEL infrastructure and viability as a relativisticintensity laser driver. 展开更多
关键词 X-ray free electron laser high-intensity laser relativistic intensity laser Ti:Sa laser
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