Analytical derivation of energy spectrum for q-deformed Pöschl-Teller potential used in quantum Otto cycle shows low-Δ high-q regime optimizes heat engine efficiency while high-Δ low-q optimizes refrigerator performance.
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Quantum Otto machine with $q$-deformed P\"oschl-Teller oscillator
Analytical derivation of energy spectrum for q-deformed Pöschl-Teller potential used in quantum Otto cycle shows low-Δ high-q regime optimizes heat engine efficiency while high-Δ low-q optimizes refrigerator performance.