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Quantum turnstiles for robust measurement of full counting statistics

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arxiv 2305.15464 v1 pith:DF6JIYG4 submitted 2023-05-24 quant-ph cond-mat.quant-gascond-mat.stat-mechcond-mat.str-el

Quantum turnstiles for robust measurement of full counting statistics

classification quant-ph cond-mat.quant-gascond-mat.stat-mechcond-mat.str-el
keywords countingfullprotocolquantumstatisticstensor-networkturnstileacts
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a scalable protocol for measuring full counting statistics (FCS) in experiments or tensor-network simulations. In this method, an ancilla in the middle of the system acts as a turnstile, with its phase keeping track of the time-integrated particle flux. Unlike quantum gas microscopy, the turnstile protocol faithfully captures FCS starting from number-indefinite initial states or in the presence of noisy dynamics. In addition, by mapping the FCS onto a single-body observable, it allows for stable numerical calculations of FCS using approximate tensor-network methods. We demonstrate the wide-ranging utility of this approach by computing the FCS of the transferred magnetization in a Floquet Heisenberg spin chain, as studied in a recent experiment with superconducting qubits, as well as the FCS of charge transfer in random circuits.

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  1. Full counting statistics in the sine-Gordon model

    cond-mat.stat-mech 2026-01 conditional novelty 6.0

    Full counting statistics for energy, momentum, and topological charge in the sine-Gordon model, computed via TBA, show fractal coupling dependence for topological charge but smooth behavior for energy and momentum.