Two electrons interacting at a mesoscopic beam splitter

被引:0
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作者
Niels Ubbelohde
Lars Freise
Elina Pavlovska
Peter G. Silvestrov
Patrik Recher
Martins Kokainis
Girts Barinovs
Frank Hohls
Thomas Weimann
Klaus Pierz
Vyacheslavs Kashcheyevs
机构
[1] Physikalisch-Technische Bundesanstalt,Department of Physics
[2] University of Latvia,Institut für Mathematische Physik
[3] Technische Universität Braunschweig,Faculty of Computing
[4] Laboratory for Emerging Nanometrology Braunschweig,undefined
[5] University of Latvia,undefined
来源
Nature Nanotechnology | 2023年 / 18卷
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摘要
The nonlinear response of a beam splitter to the coincident arrival of interacting particles enables numerous applications in quantum engineering and metrology. Yet, it poses considerable challenges to control interactions on the individual particle level. Here, we probe the coincidence correlations at a mesoscopic constriction between individual ballistic electrons in a system with unscreened Coulomb interactions and introduce concepts to quantify the associated parametric nonlinearity. The full counting statistics of joint detection allows us to explore the interaction-mediated energy exchange. We observe an increase from 50% up to 70% in coincidence counts between statistically indistinguishable on-demand sources and a correlation signature consistent with the independent tomography of the electron emission. Analytical modelling and numerical simulations underpin the consistency of the experimental results with Coulomb interactions between two electrons counterpropagating in a quadratic saddle potential. Coulomb repulsion energy and beam splitter dispersion define a figure of merit, which in this experiment is demonstrated to be sufficiently large to enable future applications, such as single-shot in-flight detection and quantum logic gates.
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页码:733 / 740
页数:7
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