首页> 外文期刊>International journal of quantum information >Coherent nonlinear low-frequency Landau-Zener tunneling induced by magnetic control of a spin qubit in a quantum wire
【24h】

Coherent nonlinear low-frequency Landau-Zener tunneling induced by magnetic control of a spin qubit in a quantum wire

机译:量子丝纺丝磁控磁控诱导的相干非线性低频Landau-Zenneling

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This paper presents nonlinear Landau-Zener (LZ) tunneling of an electron spin in an accelerating optical parabolic potential, manifested in a heterostructure quantum wire subjected to a periodic magnetic field comprising a spike and a homogeneous part. In this context, driving the two states of a pure nonlinear two-level quantum bit (qubit) system through an avoided level crossing can result in nontrivial dynamics, especially with and without considering a parabolic confinement potential characterized by a curvature confinement potential. We report two striking nonadiabatic and adiabatic scenarios in low modulation frequency limit which appear when such strength modulation occurs. Firstly, the changes of the amplitude of the driving field without considering a parabolic confinement potential act as a perturbation which mixes the spin states. Here, the dynamical evolution of the tunneling probabilities of the nonadiabatic populations under investigation is analyzed. Secondly, for strong fields and strong dependence of a parabolic confinement potential, the two diabatic states do not cross but present anti-crossing phenomenon as the time tends to infinity, describing an adiabatic transition. However, if the field strength in a wire is weak enough, the level separation of a qubit state switches abruptly around the crossing point, and LZ tunneling applies to the whole dynamical range, from adiabatic to fully nonadiabatic crossing. Locally, the tunneling process can be seen as a two-level system (TLS) undergoing a Rabi oscillation. These results open new prospects for the use of quantum interferences in spin-based devices.
机译:本文介绍了在加速光学抛物电位中的电子旋转的非线性Landau - 齐纳(LZ)隧道,其在经历了包含尖峰和均匀部分的周期性磁场的异质结构量子线中。在这种情况下,通过避免水平交叉驾驶纯非线性两级量子比特(QUBit)系统的两个状态可能导致非活动动态,特别是在不考虑由曲率限制电位特征的抛物线限制电位。我们在发生这种强度调制时,在低调制频率限制中报告了两种醒目的非等级和绝热情景。首先,在不考虑抛物线限制潜在充当混合状态的扰动的情况下,驱动场的幅度的变化。这里,分析了在调查中的非分配群体的隧道突起的动态演变。其次,对于强大的田地和抛物线限制潜力的强烈依赖性,两个糖尿病态不会交叉但是当时倾向于无穷大时,呈现反交叉现象,描述了绝热过渡。然而,如果电线中的场强足够弱,则Qubit状态的水平分离在交叉点周​​围突然切换,并且LZ隧道从绝热到完全不相间的交叉的整个动态范围适用。在本地,隧道过程可以被视为正在进行Rabi振荡的两级系统(TLS)。这些结果开辟了在基于旋转的设备中使用量子干扰的新前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号