多带双态磁性量子线中自旋量子比特态隧穿诱导的兰道-齐纳-斯图克尔伯格-马约拉纳样动力学

IF 2.6 4区 物理与天体物理 Q2 PHYSICS, APPLIED
S. E. Mkam Tchouobiap, L. C. Fai
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引用次数: 0

摘要

我们研究了自旋量子比特(qubit)态之间的转移,并研究了多带双态磁性量子线中隧道自旋量子比特的类似朗道-齐纳-斯图克尔伯格-马约拉纳(LZSM)的动力学。事实上,在三维(3D)异质结构量子线中光学抛物线势的框架内,并在外部时变磁场的影响下,我们建立了一个多频带双态磁性量子线模型。在这里,外部磁场被用来相干地操纵和控制自旋量子比特态。通过避免交叉驱动系统,我们考虑了与每个波段的自旋量子比特态相关的有效量子两级系统(TLS),在外部相干磁场的驱动下,相关哈密顿是赫米特的,这通常为 LZSM 干涉测量铺平了道路。因此,我们建立了每个波段能量特征值的解析表达式,并推导出相关 TLS 隧道概率动态演化的解析解。因此,我们计算出了多波段 TLS 每个波段的非绝热和绝热隧道概率(存活和转换)。为此,我们分析了前四个波段(波段量子数 n = 0、1、2 和 3)中自旋量子比特群隧穿概率的非绝热和绝热动态演化。结果是,根据驱动磁场的振幅强度和驱动频率的大小,我们报告了在每个波段中二价态和绝价态的两种引人注目的非绝热和绝热情况。在这种情况下,通过避免电平交叉来驱动与自旋量子比特态相关的多波段 TLS 每个波段的两个态,会在某些阶段产生非对称和不一致的动力学,从而导致明显的不准确概率,尤其是在强驱动磁场和高驱动频率的情况下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Landau–Zener–Stückelberg–Majorana-like dynamics induced by tunneling of spin qubit states in a multiband two-state magnetic quantum wire

We investigate the transfer between spin quantum bit (qubit) states and study the Landau–Zener–Stückelberg–Majorana (LZSM)-like dynamics of tunneling spin qubits in a multiband two-state magnetic quantum wire. Indeed, within the framework of an optical parabolic potential in a three-dimensional (3D) heterostructure quantum wire and under the influence of an external time-varying magnetic field, a model for a multiband two-state magnetic quantum wire is developed. Here, the external magnetic field is used to coherently manipulate and control spin qubit states. By driving the system through an avoided crossing, we consider the associated effective quantum two-level system (TLS) related to the spin qubit states in each band, driving by an external coherent magnetic field in which the related Hamiltonian is Hermitian, and which generally paves a way to LZSM interferometry. Thus, we establish the analytical expressions of the energy eigenvalues in each band and derive the analytical solution of the dynamical evolution of the tunneling probabilities of the associated TLS. Accordingly, nonadiabatic and adiabatic tunneling probabilities (survival and transition) are calculated for each band of the multiband TLS. In this respect, the nonadiabatic and adiabatic dynamical evolutions of the tunneling probabilities of spin qubit populations in the first four bands, with band quantum numbers n = 0, 1, 2 and 3 are analyzed. As a result, depending on the amplitude strength of the driven magnetic field and the magnitude of the driving frequency, we report two striking nonadiabatic and adiabatic scenarios in each band for both the diabatic and adiabatic states. In this context, driving the two states of each band of the multiband TLS related to the spin qubit states through an avoided level crossing can result in nontrivial and incoherent dynamics at certain phases, resulting to apparent inaccurate probabilities, especially in the case of strong driven magnetic field and high driving frequency.

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来源期刊
International Journal of Modern Physics B
International Journal of Modern Physics B 物理-物理:凝聚态物理
CiteScore
3.70
自引率
11.80%
发文量
417
审稿时长
3.1 months
期刊介绍: Launched in 1987, the International Journal of Modern Physics B covers the most important aspects and the latest developments in Condensed Matter Physics, Statistical Physics, as well as Atomic, Molecular and Optical Physics. A strong emphasis is placed on topics of current interest, such as cold atoms and molecules, new topological materials and phases, and novel low dimensional materials. One unique feature of this journal is its review section which contains articles with permanent research value besides the state-of-the-art research work in the relevant subject areas.
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