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Deployed quantum link characterization via Bayesian ancilla-assisted process tomography

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arxiv 2410.00892 v1 pith:2JEPCKLB submitted 2024-10-01 quant-ph physics.optics

classification quant-phphysics.optics
keywords quantumprocessdeployedlinktomographyancilla-assistedbayesianfirst
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The development of large-scale quantum networks requires reliable quantum channels, the quality of which can be quantified by the framework of quantum process tomography. In this work, we leverage ancilla-assisted process tomography and Bayesian inference to probe a 1.6 km deployed fiber-optic link. We send one of two polarization-entangled photons from Alice in one building to Bob in another, exploiting the local qubit as an ancilla system to characterize the corresponding quantum channel. Monitoring over a 24 h period returns a steady process fidelity of 95.1(1)%, while controllable spectral filtering with passbands from 0.025-4.38 THz finds fidelities that first increase, then level off with bandwidth, suggesting both stable operation with time and minimal polarization mode dispersion. To our knowledge, these results represent the first AAPT of a deployed quantum link, revealing a valuable tool for in situ analysis of entanglement-based quantum networks.

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  1. Continuous Automatic Polarization Channel Stabilization from Heterodyne Detection of Coexisting Dim Reference Signals

    quant-ph 2024-11 conditional novelty 6.0 of 10

    Demonstrates continuous automatic polarization channel stabilization using heterodyne-detected dim wavelength-multiplexed references, maintaining entanglement fidelity 0.94 ± 0.03 over 30 hours on a metropolitan quant...

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