H Morita, S Fujioka - Reviews of Modern Plasma Physics, 2023 - Springer
Strong magnetic fields play an important role in high-energy-density plasma. Several approaches have been investigated within a decade to access the strong magnetic field …
HB11 Energy's mission is to realize large-scale electricity generation from the fusion of hydrogen with boron-11 (the HB11, or “proton-boron”, reaction) without the environmental …
The nuclear reaction known as proton-boron fusion has been triggered by a subnanosecond laser system focused onto a thick boron nitride target at modest laser intensity (∼ 10 16 …
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 …
Fast isochoric heating of a pre-compressed plasma core with a high-intensity short-pulse laser is an attractive and alternative approach to create ultra-high-energy-density states like …
C Tailliez, X Davoine, A Debayle, L Gremillet… - Physical Review Letters, 2022 - APS
Relativistic interactions between ultraintense (> 10 18 W cm-2) laser pulses and magnetized underdense plasmas are known to produce few-cycle Cerenkov wake radiation in the …
A kilo-tesla level, quasi-static magnetic field (B-field), which is generated with an intense laser-driven capacitor-coil target, was measured by proton deflectometry with a proper …
Intense lasers interacting with dense targets accelerate relativistic electron beams, which transport part of the laser energy into the target depth. However, the overall laser-to-target …
A microtube implosion driven by ultraintense laser pulses is used to produce ultrahigh magnetic fields. Due to the laser-produced hot electrons with energies of mega-electron …