首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Temporal interferometry: A mechanism for controlling qubit transitions during twisted rapid passage with possible application to quantum computing - art. no. 052314
【24h】

Temporal interferometry: A mechanism for controlling qubit transitions during twisted rapid passage with possible application to quantum computing - art. no. 052314

机译:时间干涉术:一种在扭曲的快速通过过程中控制量子位跃迁的机制,可能会应用于量子计算-艺术。没有。 052314

获取原文
获取原文并翻译 | 示例
           

摘要

In an adiabatic rapid passage experiment, the Bloch vector of a two-level system (qubit) is inverted by slowly inverting an external field to which it is coupled, and along which it is initially aligned. In twisted rapid passage, the external field is allowed to twist around its initial direction with azimuthal angle phi(t) at the same time that it is inverted. For polynomial twist, phi(t)similar toBt(n). We show that for ngreater than or equal to3, multiple avoided crossings can occur during the inversion of the external field, and that these crossings give rise to strong interference effects in the qubit transition probability. The transition probability is found to be a function of the twist strength B, which can be used to control the time separation of the avoided crossings, and hence the character of the interference. Constructive and destructive interference are possible. The interference effects are a consequence of the temporal phase coherence of the wave function. The ability to vary this coherence by varying the temporal separation of the avoided crossings renders twisted rapid passage with adjustable twist strength into a temporal interferometer through which qubit transitions can be greatly enhanced or suppressed. Possible application of this interference mechanism to construction of fast fault-tolerant quantum controlled-NOT and NOT gates is discussed. [References: 27]
机译:在绝热快速通过实验中,通过缓慢地反转与其耦合并初始对准的外部场,来反转两级系统(量子位)的Bloch矢量。在扭曲的快速通过中,外场在倒置的同时允许绕其初始方向以方位角phi(t)扭曲。对于多项式扭曲,phi(t)类似于Bt(n)。我们表明,对于大于或等于3的ngreater,在外场反演期间可能会发生多个避免的交叉,并且这些交叉在qubit转换概率中产生了强烈的干扰效应。发现过渡概率是扭转强度B的函数,其可用于控制避免的交叉的时间间隔,从而控制干扰的特性。建设性和破坏性干扰都是可能的。干扰效应是波函数的时间相位相干性的结果。通过改变避免的交叉点的时间间隔来改变这种相干性的能力使得扭曲的快速通道以可调节的扭曲强度进入到时间干涉仪中,通过该干涉仪可以大大增强或抑制量子位跃迁。讨论了这种干扰机制在快速容错量子控制的NOT和NOT门的构造中的可能应用。 [参考:27]

著录项

相似文献

  • 外文文献
  • 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