Anyon-pair baths yield a nontrivial temperature-dependent spectral density and modified relaxation for a dissipative quantum harmonic oscillator, with anyonic effects most pronounced at intermediate temperatures.
Wilczek, Quantum mechanics of fractional-spin particles,Phys
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The Dunkl-Pauli oscillator in an Aharonov-Bohm flux has its allowed states constrained by a compatibility relation ν1 + ε ν2 = 0, producing a lowest angular number ℓ0 that governs the low-temperature thermodynamics including a Schottky anomaly.
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The quantum harmonic oscillator in a dissipative bath of anyon pairs
Anyon-pair baths yield a nontrivial temperature-dependent spectral density and modified relaxation for a dissipative quantum harmonic oscillator, with anyonic effects most pronounced at intermediate temperatures.
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Thermodynamic Properties of the Dunkl-Pauli Oscillator in an Aharonov-Bohm Flux
The Dunkl-Pauli oscillator in an Aharonov-Bohm flux has its allowed states constrained by a compatibility relation ν1 + ε ν2 = 0, producing a lowest angular number ℓ0 that governs the low-temperature thermodynamics including a Schottky anomaly.