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Precision mapping of laser-driven magnetic fields and their evolution in high-energy-density plasmas
arXiv Physics
CC BY
이 매체는 공공·자유 라이선스로 본문을 직접 표시합니다.Abstract
Magnetic fields generated by the Rayleigh-Taylor instability were measured in laser-accelerated planar foils using ultrafast proton radiography.
Thin plastic foils were irradiated with $\sim$4-kJ, 2.5-ns laser pulses focused to an intensity of $\sim$10$^{14}$ W$/$cm$^{2}$ on the OMEGA EP Laser System.
Target modulations were seeded by laser nonuniformities and amplified during target acceleration by the Rayleigh-Taylor instability.
The experimental data show the hydrodynamic evolution of the target and MG-level magnetic fields generated in the broken foil.
The experimental data are in good agreement with predictions from 2-D magnetohydrodynamic simulations.
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