Bierwage Andreas, Esirkepov Timur Zh, Koga James K, Pirozhkov Alexander S, Aiba Nobuyuki, Huang Kai, Kando Masaki, Kiriyama Hiromitsu, Matsuyama Akinobu, Shinohara Kouji, Yagi Masatoshi, Yun Gunsu S
National Institutes for Quantum Science and Technology (QST), Rokkasho Institute for Fusion Energy, Rokkasho, Aomori, 039-3212, Japan.
QST, Naka Institute for Fusion Science and Technology, Naka, Ibaraki, 311-0193, Japan.
Sci Rep. 2024 Nov 13;14(1):27853. doi: 10.1038/s41598-024-77739-2.
A laser pulse focused to relativistic intensity inside a magnetically confined fusion (MCF) plasma plows away all electrons in its path. The ensuing Coulomb explosion of the ions leaves behind a cavity of microscopic size, with gradients in the electric potential and plasma density orders of magnitude stronger than anything the plasma could generate spontaneously. When posing questions concerning the practical utility of such an exotic perturbation, the life time and structural evolution of the cavity are of interest. Our simulations in a simplified 1D + 2D setting and otherwise realistic parameters suggest that a sub-mm wide seed cavity (meant to resemble the laser wake channel) collapses or disintegrates within 10 ns. The dynamics are sensitive to the relative scales of the cavity, Debye shielding and gyration. We find evidence for the possibility that the collapsing seed cavity spawns solitary micro-cavities. It remains to be seen whether such structures form and survive long enough in a 3D setting to alter the local plasma conditions (e.g., as micro-cavity clusters) in ways that may be utilized for practical purposes such as plasma initiation, diagnostics or control.
聚焦到磁约束聚变(MCF)等离子体内相对论强度的激光脉冲会扫除其路径上的所有电子。随后离子的库仑爆炸会留下一个微观尺寸的空穴,其电势和等离子体密度梯度比等离子体自发产生的任何情况都要强几个数量级。当提出关于这种奇异微扰的实际效用的问题时,空穴的寿命和结构演化就很值得关注。我们在简化的一维加二维设置以及其他现实参数下的模拟表明,一个亚毫米宽的种子空穴(旨在类似于激光尾流通道)会在10纳秒内坍塌或解体。动力学对空穴、德拜屏蔽和回旋的相对尺度很敏感。我们发现有证据表明坍塌的种子空穴可能会产生孤立的微空穴。在三维环境中,这样的结构是否会形成并存活足够长的时间,从而以可用于等离子体引发、诊断或控制等实际目的的方式改变局部等离子体条件(例如作为微空穴簇),还有待观察。