Publikation: Many-body manifestation of interaction-free measurement : The Elitzur-Vaidman bomb
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We consider an implementation of the Elitzur-Vaidman bomb experiment in a dc-biased electronic Mach-Zehnder interferometer with a leakage port on one of its arms playing the role of a “lousy bomb.” Many-body correlations tend to screen out manifestations of interaction-free measurement. Analyzing the correlations between the current at the interferometer's drains and at the leakage port, we identify the limit where the originally proposed single-particle effect is recovered. Specifically, we find that in the regime of sufficiently diluted injected electron beam and short measurement times, effects of quantum-mechanical wave-particle duality emerge in the cross-current correlations.
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ZILBERBERG, Oded, Alessandro ROMITO, Yuval GEFEN, 2016. Many-body manifestation of interaction-free measurement : The Elitzur-Vaidman bomb. In: Physical Review B. American Physical Society (APS). 2016, 93(11), 115411. ISSN 2469-9950. eISSN 2469-9969. Available under: doi: 10.1103/PhysRevB.93.115411BibTex
@article{Zilberberg2016Manyb-54937,
year={2016},
doi={10.1103/PhysRevB.93.115411},
title={Many-body manifestation of interaction-free measurement : The Elitzur-Vaidman bomb},
number={11},
volume={93},
issn={2469-9950},
journal={Physical Review B},
author={Zilberberg, Oded and Romito, Alessandro and Gefen, Yuval},
note={Article Number: 115411}
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<dcterms:abstract xml:lang="eng">We consider an implementation of the Elitzur-Vaidman bomb experiment in a dc-biased electronic Mach-Zehnder interferometer with a leakage port on one of its arms playing the role of a “lousy bomb.” Many-body correlations tend to screen out manifestations of interaction-free measurement. Analyzing the correlations between the current at the interferometer's drains and at the leakage port, we identify the limit where the originally proposed single-particle effect is recovered. Specifically, we find that in the regime of sufficiently diluted injected electron beam and short measurement times, effects of quantum-mechanical wave-particle duality emerge in the cross-current correlations.</dcterms:abstract>
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