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October 2, 20250 citationsOpen Access

Quantum measurement of work in mesoscopic systems

AVAnant Vijay VarmaDCDoron Cohen

Key Points

  • Quantum mechanics influences the measurement of work in mesoscopic systems, leading to fundamental limitations.
  • Interference fingerprints can only be resolved by considering additional quantum uncertainty limitations.
  • Back-reaction presents classical-like restrictions for measuring work in a quantum context.
  • The quantum limitation is inherent and cannot be mitigated through super-resolution techniques.

Abstract

Heat and work in thermodynamics refer to the measurement of changes in energy content of external bodies (baths and agents). We discuss the implications of quantum mechanics on the possibility to measure work in a mesoscopic context. The agent is a quantum entity (say an oscillator) that is used to drive the system. An obvious limitation is related to back-reaction, leading to a classical-like restriction. We find that in order to resolve fingerprints of interference an additional quantum uncertainty limitation should be taken into account in the design of the agent. The quantum limitation is fundamental, and cannot be relaxed by super-resolution techniques.

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Cite This Study

Varma et al. (2025) studied this question.

synapsesocial.com/papers/68de68f683cbc991d0a21cd8https://doi.org/10.48550/arxiv.2507.09977
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