Quantum Otto machine with $q$-deformed P\"oschl-Teller oscillator
Abstract
We study the impact of the potential parameters of the q-deformed modified P\"oschl-Teller potential on the thermodynamic performance of a quantum Otto cycle, where the -deformed modified P\"oschl-Teller potential serves as the working substance. Analytical expressions for the energy spectrum and wave functions are derived, enabling a systematic investigation of heat exchange, work output, efficiency, and coefficient of performance. We show that -deformation modifies the energy spectrum and creates distinct performance regions in the (, ) parameter space. Low () and high () favour optimal heat engine efficiency, whereas high () and low () improve refrigerator performance. The heat engine efficiency peaks in the low-(), high-() regime. These results highlight the q-deformed modified P\"oschl-Teller potential as a versatile and tunable platform for exploring potential parameter-driven effects in quantum thermal machines.
Keywords
Cite
@article{arxiv.2605.24483,
title = {Quantum Otto machine with $q$-deformed P\"oschl-Teller oscillator},
author = {Collins O. Edet and Norshamsuri Ali and Rosdisham Endut and O. Abah},
journal= {arXiv preprint arXiv:2605.24483},
year = {2026}
}
Comments
10 pages, 5 figures