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How an interacting many-body system tunnels through a potential barrier to open space

机译:相互作用的多体系统如何穿越潜在的障碍物进入开放空间

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摘要

The tunneling process in a many-body system is a phenomenon which lies at the very heart of quantum mechanics. It appears in nature in the form of α-decay, fusion and fission in nuclear physics, and photoassociation and photodissociation in biology and chemistry. A detailed theoretical description of the decay process in these systems is a very cumbersome problem, either because of very complicated or even unknown interparticle interactions or due to a large number of constituent particles. In this work, we theoretically study the phenomenon of quantum many-body tunneling in a transparent and controllable physical system, an ultracold atomic gas. We analyze a full, numerically exact many-body solution of the Schrödinger equation of a one-dimensional system with repulsive interactions tunneling to open space. We show how the emitted particles dissociate or fragment from the trapped and coherent source of bosons: The overall many-particle decay process is a quantum interference of single-particle tunneling processes emerging from sources with different particle numbers taking place simultaneously. The close relation to atom lasers and ionization processes allows us to unveil the great relevance of many-body correlations between the emitted and trapped fractions of the wave function in the respective processes.
机译:多体系统中的隧穿过程是一种现象,它是量子力学的核心。它在自然界中以α衰变,核物理中的聚变和裂变以及生物学和化学中的光缔合和光解离的形式出现。这些系统中衰变过程的详细理论描述是一个非常麻烦的问题,可能是由于非常复杂甚至未知的粒子间相互作用,也可能是由于大量的组成粒子。在这项工作中,我们从理论上研究了在透明且可控制的物理系统(超冷原子气体)中的量子多体隧穿现象。我们分析一维系统的Schrödinger方程的完整,精确到数值的多体解,并通过排斥相互作用隧穿到开放空间。我们展示了发射的粒子如何从玻色子的俘获和相干源中解离或破碎:整体多粒子衰减过程是单粒子隧穿过程的量子干扰,该隧道同时出现于具有不同粒子数的源。与原子激光器和电离过程的密切关系使我们能够揭示在各个过程中波函数的发射部分和捕获部分之间的多体相关性的巨大关联性。

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