论文标题

在一维晶格中进行两个组件量子步行,跳跃不平衡

Two component quantum walk in one-dimensional lattice with hopping imbalance

论文作者

Giri, Mrinal Kanti, Mondal, Suman, Das, Bhanu Pratap, Mishra, Tapan

论文摘要

我们在一维晶格中研究了两分量的量子步行。我们表明,组件间的相互作用强度以及组件之间的跳跃不平衡在量子步行中显示出不同的特征,对于不同的初始状态。当步行者最初在同一位置上时,当它们之间的相互作用较弱时,慢速和快速粒子都会执行独立的粒子量子行走。然而,更强的颗粒间相互作用导致两个粒子之间形成的排斥对的量子行走。对于不同的初始状态,当步行者最初在不同的位置上时,慢粒子执行的量子步行几乎与快速粒子的量子行走无关,快速粒子在整个粒子上表现出反射和透射的成分,具有较大的跳跃强度,可用于弱相互作用。除了相互作用强度的临界值之外,快速粒子的波函数不再通过慢速粒子信号渗透空间相分离。但是,当两个粒子最初位于晶格的两个相对边缘时,相互作用促进了它们彼此的完全反射。我们通过检查各种物理量(例如现场密度演化,两粒子相关函数和传输系数)来分析上述特征。

We investigate the two-component quantum walk in one-dimensional lattice. We show that the inter-component interaction strength together with the hopping imbalance between the components exhibit distinct features in the quantum walk for different initial states. When the walkers are initially on the same site, both the slow and fast particles perform independent particle quantum walks when the interaction between them is weak. However, stronger inter-particle interactions result in quantum walks by the repulsively bound pair formed between the two particles. For different initial states when the walkers are on different sites initially, the quantum walk performed by the slow particle is almost independent of that of the fast particle, which exhibits reflected and transmitted components across the particle with large hopping strength for weak interactions. Beyond a critical value of the interaction strength, the wave function of the fast particle ceases to penetrate through the slow particle signalling a spatial phase separation. However, when the two particles are initially at the two opposite edges of the lattice, then the interaction facilitates the complete reflection of both of them from each other. We analyze the above mentioned features by examining various physical quantities such as the on-site density evolution, two-particle correlation functions and transmission coefficients.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源