Akli K U, Orban C, Schumacher D, Storm M, Fatenejad M, Lamb D, Freeman R R
The Ohio State University, Columbus, Ohio 43210, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Dec;86(6 Pt 2):065402. doi: 10.1103/PhysRevE.86.065402. Epub 2012 Dec 28.
Cu wires attached to Al cones are used to investigate the energy coupling efficiency of laser light to fast electrons through a cone into a dense plasma. We present experimental and simulation results demonstrating the effect on the energy coupling of effectively placing the cone in a surrounding high density plasma as well as the effect of a large preformed plasma inside the cone. Thick cone walls, simulating plasma surrounding the cone in fast ignition, reduce the energy coupling by a factor of up to 4. An increase in prepulse inside the cone by a factor of 50 further reduces coupling by a factor of 3. Simulations with the pic code lsp that include the laser plasma interaction and the preformed plasma from the flash code show that electron refluxing in thin cone-wall targets enhances coupling to the wire. The implications for full-scale cone-guided fast ignition are discussed.
连接到铝锥上的铜丝用于研究激光通过锥体进入稠密等离子体与快电子的能量耦合效率。我们展示了实验和模拟结果,证明了将锥体有效地置于周围高密度等离子体中对能量耦合的影响,以及锥体内大型预形成等离子体的影响。模拟快速点火中锥体周围等离子体的厚锥壁会使能量耦合降低多达4倍。锥体内预脉冲增加50倍会使耦合进一步降低3倍。使用包含激光等离子体相互作用和来自闪光代码的预形成等离子体的pic代码lsp进行的模拟表明,薄锥壁靶中的电子回流增强了与铜丝的耦合。讨论了对全尺寸锥引导快速点火的影响。