Phenomenological Constraints on the Reconstructibility of Quantum Coherence
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2026
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| _version_ | 1866901361294049280 |
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| author | Chenuaud, Alex |
| author_facet | Chenuaud, Alex |
| contents | <p>This work defines how potential limits to the reconstructibility of quantum coherence can be translated into measurable experimental constraints.</p> <p>It proposes a minimal phenomenological framework for testing possible structural limitations to coherence reconstructibility within the OFID-G setting.</p> <p>Rather than introducing a new dynamical model, the approach defines an operational residual quantity after calibration of environmental decoherence, and introduces minimal parametrizations of this residual as a function of experimentally controllable parameters.</p> <p>Two generic behaviors are considered: a continuous residual contribution leading to an irreducible floor, and a threshold-like transition beyond a critical parameter value.</p> <p>This framework enables null experimental results to be translated into quantitative constraints, providing a direct interface between conceptual hypotheses and experimental methodologies in mesoscopic quantum systems.</p> <p>It complements existing experimental approaches by introducing a minimal parametrization layer suitable for interpretation and constraint-setting.</p> <p>In line with standard approaches to parameter estimation in quantum experiments, the framework enables systematic constraint-setting from null results.</p> <p> </p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19864511 |
| institution | Zenodo |
| language | enc |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Phenomenological Constraints on the Reconstructibility of Quantum Coherence Chenuaud, Alex quantum decoherence mesoscopic quantum systems quantum coherence parameter estimation reconstructibility experimental constraints phenomenological modeling quantum-classical transition quantum information accessibility <p>This work defines how potential limits to the reconstructibility of quantum coherence can be translated into measurable experimental constraints.</p> <p>It proposes a minimal phenomenological framework for testing possible structural limitations to coherence reconstructibility within the OFID-G setting.</p> <p>Rather than introducing a new dynamical model, the approach defines an operational residual quantity after calibration of environmental decoherence, and introduces minimal parametrizations of this residual as a function of experimentally controllable parameters.</p> <p>Two generic behaviors are considered: a continuous residual contribution leading to an irreducible floor, and a threshold-like transition beyond a critical parameter value.</p> <p>This framework enables null experimental results to be translated into quantitative constraints, providing a direct interface between conceptual hypotheses and experimental methodologies in mesoscopic quantum systems.</p> <p>It complements existing experimental approaches by introducing a minimal parametrization layer suitable for interpretation and constraint-setting.</p> <p>In line with standard approaches to parameter estimation in quantum experiments, the framework enables systematic constraint-setting from null results.</p> <p> </p> |
| title | Phenomenological Constraints on the Reconstructibility of Quantum Coherence |
| topic | quantum decoherence mesoscopic quantum systems quantum coherence parameter estimation reconstructibility experimental constraints phenomenological modeling quantum-classical transition quantum information accessibility |
| url | https://doi.org/10.5281/zenodo.19864511 |