论文标题
Dzyaloshinskii-Moriya和偶极 - 偶极相互作用会影响基于耦合的Landau-Majorana-Stückelberg-Zener转变
Dzyaloshinskii-Moriya and dipole-dipole interactions affect coupling-based Landau-Majorana-Stückelberg-Zener transitions
论文作者
论文摘要
从理论上讲,仅通过交换相互作用加上两个旋转(Qubits或Qutrits),当线性斜坡在两杆上作用时,经过基于耦合的关节Landau-Majorana-Stückelberg-Zener(LMSZ)过渡。在适当条件下,这种过渡将两旋链系统驱动到最大纠缠状态。在本文中,对dzyaloshinskii-moriya(DM)和偶极 - 偶极子(D-D)相互作用的量子动力学的影响进行了定性和定量研究。这两种旋转的富集汉密尔顿模型与先前的微观相同的C2对称性共享,该微型对称性再次带来了对新量子动力学问题的精确处理。本文透明地揭示了DM和D-D相互作用会产生独立,增强或阻碍,这是对两次旋转预测的动态行为的修改,仅由交换相互作用耦合。值得注意的是,根据这里的理论,在受控LMSZ方案中磁化的时间演变的测量可以提供有关描述旋转系统三种耦合的相对权重的信息。这种可能性非常重要,因为它原则上可以在给定的物理场景中采用微观模型的选择。
It has been theoretically demonstrated that two spins (qubits or qutrits), coupled by exchange interaction only, undergo a coupling-based joint Landau-Majorana-Stückelberg-Zener (LMSZ) transition when a linear ramp acts upon one of the two spins. Such a transition, under appropriate conditions on the parameters, drives the two-spin system toward a maximally entangled state. In this paper, effects on the quantum dynamics of the two qudits, stemming from the Dzyaloshinskii-Moriya (DM) and dipole-dipole (d-d) interactions, are investigated qualitatively and quantitatively. The enriched Hamiltonian model of the two spins, shares with the previous microscopic one the same C2-symmetry which once more brings about an exact treatment of the new quantum dynamical problem. This paper transparently reveals that the DM and d-d interactions generate independent, enhancing or hindering, modifications in the dynamical behaviour predicted for the two spins coupled exclusively by the exchange interaction. It is worthy noticing that, on the basis of the theory here developed, the measurement of the time evolution of the magnetization in a controlled LMSZ scenario, can furnish information on the relative weights of the three kinds of couplings describing the spin system. This possibility is very important since it allows in principle to legitimate the choice of the microscopic model to be adopted in a given physical scenario.