The confluence of magnetic fields and quantum plasma phenomena represents a frontier regime in plasma physics that unveils novel collective behaviors, transport dynamics, and field-particle interactions inaccessible through classical, or weak-field approximations. Magnetized quantum plasma (MQP), defined as a plasma system in which both quantum mechanical effects and magnetic field influences are non-negligible, becomes essential for understanding matter under extreme densities, low temperatures, or high field strengths regimes ubiquitously encountered in compact astrophysical objects and modern high-energy laboratory experiments.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Magnetized Quantum Plasma

  • Punit Kumar

摘要

The confluence of magnetic fields and quantum plasma phenomena represents a frontier regime in plasma physics that unveils novel collective behaviors, transport dynamics, and field-particle interactions inaccessible through classical, or weak-field approximations. Magnetized quantum plasma (MQP), defined as a plasma system in which both quantum mechanical effects and magnetic field influences are non-negligible, becomes essential for understanding matter under extreme densities, low temperatures, or high field strengths regimes ubiquitously encountered in compact astrophysical objects and modern high-energy laboratory experiments.