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Relativistic quantum Otto heat engine using a three-level Unruh-DeWitt detector

Relativistic quantum Otto heat engine using a three-level Unruh-DeWitt detector

来源:Arxiv_logoArxiv
英文摘要

In this study, we explore a relativistic quantum Otto heat engine with a qutrit as the working substance interacting with a quantum scalar field in curved spacetime. Unlike qubits, which extract work by simply expanding or shrinking a single energy gap, qutrits allow multiple energy gaps to be adjusted independently, enabling more versatile work extraction in the quantum Otto cycle. We derive a general positive work condition in terms of the effective temperature that each pair of energy levels perceives. Moreover, we discuss additional subtleties that are absent when using a qubit, such as the generation of coherence terms in the density matrix due to interactions.

Tomoya Hirotani、Kensuke Gallock-Yoshimura

热力工程、热机

Tomoya Hirotani,Kensuke Gallock-Yoshimura.Relativistic quantum Otto heat engine using a three-level Unruh-DeWitt detector[EB/OL].(2025-04-02)[2025-06-08].https://arxiv.org/abs/2504.01435.点此复制

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