ANALYSIS OF THE LASER PROCESS WITH THREE DIFFERENT INITIAL STATES
DOI10.1142/S0217979214500295zbMath1284.78009MaRDI QIDQ5407818
Jun-hua Chen, Fuyi You, Hong-Yi Fan
Publication date: 8 April 2014
Published in: International Journal of Modern Physics B (Search for Journal in Brave)
laser theorythe entropythe mean photon numberthe second degree of coherencethe Wigner functionthe specific entropy
Quantum optics (81V80) Phase-space methods including Wigner distributions, etc. applied to problems in quantum mechanics (81S30) Lasers, masers, optical bistability, nonlinear optics (78A60) Quantum coherence, entanglement, quantum correlations (81P40) Open systems, reduced dynamics, master equations, decoherence (81S22)
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Cites Work
- Newton-Leibniz integration for ket-bra operators. II: Application in deriving density operator and generalized partition function formula
- New representation of thermal states in thermal field dynamics
- Newton-Leibniz integration for ket-bra operators in quantum mechanics and derivation of entangled state representations
- Entropy evolution law in a laser process
- Newton-Leibniz integration for ket-bra operators in quantum mechanics. IV: Integrations within Weyl ordered product of operators and their applications
- ENTANGLED STATES, SQUEEZED STATES GAINED VIA THE ROUTE OF DEVELOPING DIRAC'S SYMBOLIC METHOD AND THEIR APPLICATIONS
- New representation for thermo excitation and de-excitation in thermofield dynamics
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