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Spin-1/2 particles in phase space: Casimir effect and Stefan-Boltzmann law at finite temperature - MaRDI portal

Spin-1/2 particles in phase space: Casimir effect and Stefan-Boltzmann law at finite temperature (Q2196405)

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Spin-1/2 particles in phase space: Casimir effect and Stefan-Boltzmann law at finite temperature
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    Spin-1/2 particles in phase space: Casimir effect and Stefan-Boltzmann law at finite temperature (English)
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    2 September 2020
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    Summary: The Dirac field, spin 1/2 particles, is investigated in phase space. The Dirac propagator is defined. The Thermo Field Dynamics (TFD) formalism is used to introduce finite temperature. The energy-momentum tensor is calculated at finite temperature. The Stefan-Boltzmann law is established, and the Casimir effect is calculated for the Dirac field in phase space at zero and finite temperature. A comparative analysis with these results in standard quantum mechanics space is realized.
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