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April 3, 20260 citationsOpen Access

Bell Decay Clock: Extracting Useful Information from Decoherence via Mid-Circuit Measurement Feedforward

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TOTakeshi Okuda

Key Points

  • The aim is to develop a feedforward protocol that utilizes decoherence as an information resource in quantum circuits.
  • Developed a feedforward protocol for decoherence management
  • Implemented mid-circuit measurements on entangled states
  • Compared Bell clock performance with traditional ZZ clock
  • Bell clock successfully maintains GPS > 0 over a wider window than the ZZ clock
  • ZZ clock fails completely while Bell clock yields positive GPS results
  • Mid-circuit measurement feedback is confirmed as an active control mechanism

Abstract

A feedforward protocol that converts decoherence into an information resource for quantum control. The Bell Decay Clock encodes timing information in measurement-resolved decay pathways of entangled states, enabling mid-circuit measurement (MCM) to extract useful classical information even after phase coherence is lost. Key results:- IBM Heron: Bell clock maintains GPS > 0 over 3-4x wider window than ZZ clock (18/18 points, z > 5σ)- IQM Garnet: ZZ clock fails completely (GPS < 0, all points), Bell clock succeeds (GPS = +0.19, 4.4σ)- Static vs Dynamic control: ΔGPS = +0.55 isolates MCM feedback as active mechanism- Universal feedforward phase ϕ* = 0.873 rad verified across 3 independent qubit pairs Related: EEDT protocol (DOI: 10.5281/zenodo.19029431)Code: https://github.com/okudat9/Quantum-6502

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Cite This Study

Takeshi Okuda (2026) studied this question.

synapsesocial.com/papers/69cf5fe05a333a821460ea7chttps://doi.org/10.5281/zenodo.19367564
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