Ubbelohde Niels, Freise Lars, Pavlovska Elina, Silvestrov Peter G, Recher Patrik, Kokainis Martins, Barinovs Girts, Hohls Frank, Weimann Thomas, Pierz Klaus, Kashcheyevs Vyacheslavs
Physikalisch-Technische Bundesanstalt, Braunschweig, Germany.
Department of Physics, University of Latvia, Riga, Latvia.
Nat Nanotechnol. 2023 Jul;18(7):733-740. doi: 10.1038/s41565-023-01370-x. Epub 2023 May 11.
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.
分束器对相互作用粒子同时到达的非线性响应,使得其在量子工程和计量学中有众多应用。然而,在单个粒子层面上控制相互作用面临着巨大挑战。在此,我们在一个具有未屏蔽库仑相互作用的系统中,探测单个弹道电子之间介观缩颈处的符合关联,并引入概念来量化相关的参数非线性。联合探测的全计数统计使我们能够探索相互作用介导的能量交换。我们观察到,在统计上无法区分的按需源之间,符合计数从50%增加到了70%,并且观察到了与电子发射独立层析成像一致的关联特征。解析建模和数值模拟证实了实验结果与在二次鞍形势中反向传播的两个电子之间的库仑相互作用的一致性。库仑排斥能和分束器色散定义了一个品质因数,在本实验中,该品质因数被证明足够大,足以实现诸如单次飞行中检测和量子逻辑门等未来应用。