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January 25, 20260 citationsOpen Access

A Thermodynamic Lower Bound on Sustained Quantum Identity

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DCDimitri Cerny

Key Points

  • The aim is to determine the thermodynamic cost of sustaining quantum identity during error correction.
  • Analyzed thermodynamic implications of error correction in quantum systems.
  • Derived heat dissipation bounds from information processed during syndrome extraction.
  • Established relationships between temperature, cooling power, and sustained throughput of quantum identity.
  • Identified a minimum heat dissipation rate required for sustaining quantum identity.
  • Established that there is an upper bound on throughput independent of various system characteristics.
  • Demonstrated that dissipation constraints arise from maintenance needs rather than quantum dynamics.

Abstract

Fault-tolerant quantum computation relies on continuous error-correcting processes to preserve logical identity over time. While fault-tolerance threshold theorems bound logical error rates per operation, the thermodynamic cost of sustaining quantum identity under ongoing maintenance has not been explicitly isolated. In this work, we show that any fault-tolerant quantum system that preserves logical identity through active error correction must dissipate heat at a rate bounded below by the irreversible information processed during syndrome extraction and reset. As a consequence, at fixed temperature and cooling power, there exists an upper bound on the sustained throughput of fault-tolerant quantum identity, independent of code family, decoding strategy, or physical noise model. The result establishes a fundamental persistence–dissipation constraint arising from irreversible maintenance rather than from quantum dynamics themselves. This work is intentionally descriptive and non-operational, identifying a structural thermodynamic bound without proposing mechanisms, architectures, or control strategies.

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Cite This Study

Dimitri Cerny (2026) studied this question.

synapsesocial.com/papers/6975b36bfeba4585c2d6ee50https://doi.org/10.5281/zenodo.18356344
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