物理
稠密等离子体焦点
背景(考古学)
缩放比例
中子
核物理学
等离子体
光学(聚焦)
产量(工程)
标度律
统计物理学
光学
热力学
古生物学
几何学
数学
生物
摘要
The observed scaling of neutron yield in the Dense Plasma Focus (DPF) as the fourth power of the current in the plasma was the principal driver of the growth of DPF research in its early days. Subsequent discovery of failure of this scaling law was also the principal reason for its abandonment by major laboratories. Attempts to understand this failure of scaling have so far been inconclusive. This letter looks at this failure in the context of the recently introduced Generalized Plasma Focus (GPF) problem and suggests a possible reason that can be experimentally examined using small plasma focus devices. This involves restrictions placed on the drive parameter by conservation laws for mass, momentum and energy. A suggested empirical workaround to the problem of neutron yield scaling failure could also be configured as a method for increasing the pressure range for neutron emission in small DPF devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI