In the landscape of contemporary physics, the interface between plasma physics and quantum field theory becomes sharply prominent when plasma systems are driven into regimes characterized by relativistic velocities, ultra-strong fields, or quantum-statistical coherence. Quantum plasmas, which at their core involve collective behaviours of charged particles governed by quantum mechanical principles, acquire a distinct and elevated role in high energy physics (HEP) due to their capacity to mediate, amplify, or restructure field–matter interactions under extreme conditions.

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Quantum Plasmas in High Energy Contexts

  • Punit Kumar

摘要

In the landscape of contemporary physics, the interface between plasma physics and quantum field theory becomes sharply prominent when plasma systems are driven into regimes characterized by relativistic velocities, ultra-strong fields, or quantum-statistical coherence. Quantum plasmas, which at their core involve collective behaviours of charged particles governed by quantum mechanical principles, acquire a distinct and elevated role in high energy physics (HEP) due to their capacity to mediate, amplify, or restructure field–matter interactions under extreme conditions.