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March 3, 20260 citationsOpen Access

Discontinuous Decoherence Transition from Selective Channel Suppression

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HSHiroyuki Shioiri

Key Points

  • The aim is to uncover a discontinuous transition in coherence time caused by selective decoherence channel loss.
  • Utilized the Gaussian influence-functional formalism for analysis.
  • Normalized the Keldysh weight matrix.
  • Calculated the parameter-independent coherence-time ratio.
  • Established falsification criteria for testing predictions.
  • Identified a coherence-time ratio of R = 4/3 as a pivotal finding.
  • Demonstrated that the transition is distinct from known dynamical-decoupling fixed points.
  • Confirmed independence of pulse number in the transition.

Abstract

We identify a regime of open quantum system dynamics in which the observed coherence time exhibits a discontinuous transitionarising from selective loss of accessibility ofan effective decoherence channel. Within theGaussian influence-functional formalism, normalization of the Keldysh weight matrix leadsto a parameter-independent coherence-timeratioR≡ τpostτpre = 43 .The result follows entirely from standardopen-system theory and introduces no modification of quantum mechanics. The predicted transition differs fundamentally fromknowndynamical-decoupling fixed points, occurring in time at fixed control parametersand remaining independent of pulse number.Because the framework yields explicit falsification criteria, the predicted ratio providesa direct experimental probe of multi-channeldecoherence structure. The analysis suggeststhat R = 4/3 represents a structural invariant associated with the normalized geometryof the Keldysh representation.

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Cite This Study

Hiroyuki Shioiri (2026) studied this question.

synapsesocial.com/papers/69a67f12f353c071a6f0aeb0https://doi.org/10.5281/zenodo.18821977
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