论文标题
横向方向对二维玻色孔连接中多体隧道动力学的影响
Impact of the transverse direction on the many-body tunneling dynamics in a two-dimensional bosonic Josephson junction
论文作者
论文摘要
多体系统中的隧道似乎是量子物理学的新颖含义之一,其中颗粒在原本经典的潜在势垒下在太空中移动。在这里,我们从理论上描述了二维对称双孔电势的封闭系统中一些复杂的骨云的隧道现象的量子动力学。我们研究了横向方向的包含,即与双孔连接的正交方式如何干预玻色云的隧道动力学。我们使用一种著名的多体数值方法,称为玻色子(MCTDHB)方法的多配制时间依赖性Hartree。 MCTDHB允许人们准确地获得玻色子的时间依赖性多粒子波函数,这些玻色子原则上需要有关所研究系统的所有感兴趣信息。我们通过准备双孔左侧孔的初始状态来分析隧道动力学,就像地面,纵向或横向激发或涡旋状态一样。我们通过分析生存概率,耗尽和碎片的演化以及许多粒子位置,动量和角度摩肌期望值及其方差来阐明隧道过程的详细机制。通常,所有物体在穿过障碍物和包括横向激发的状态的同时都会失去连贯性。简要讨论含义。
Tunneling in a many-body system appears as one of the novel implications of quantum physics, in which particles move in space under an otherwise classically-forbidden potential barrier. Here, we theoretically describe the quantum dynamics of the tunneling phenomenon of a few intricate bosonic clouds in a closed system of a two-dimensional symmetric double-well potential. We examine how the inclusion of the transverse direction, orthogonal to the junction of the double-well, can intervene in the tunneling dynamics of bosonic clouds. We use a well-known many-body numerical method, called the multiconfigurational time-dependent Hartree for bosons (MCTDHB) method. MCTDHB allows one to obtain accurately the time-dependent many-particle wavefunction of the bosons which in principle entails all the information of interest about the system under investigation. We analyze the tunneling dynamics by preparing the initial state of the bosonic clouds in the left well of the double-well either as the ground, longitudinally or transversely excited, or a vortex state. We unravel the detailed mechanism of the tunneling process by analyzing the evolution in time of the survival probability, depletion and fragmentation, and the many-particle position, momentum, and angular-momentum expectation values and their variances. As a general rule, all objects lose coherence while tunneling through the barrier and the states which include transverse excitations do so faster. Implications are briefly discussed.