首页> 外文期刊>Nature physics >Confined quantum Zeno dynamics of a watched atomic arrow
【24h】

Confined quantum Zeno dynamics of a watched atomic arrow

机译:观察到的原子箭的受限量子芝诺动力学

获取原文
获取原文并翻译 | 示例
           

摘要

In a quantum world, a watched arrow never moves. This is the quantum Zeno effect1. Repeatedly asking a quantum system 'are you still in your initial state?' blocks its coherent evolution through measurement back-action. Quantum Zeno dynamics (QZD; refs 2,3) gives more freedom to the system. Instead of pinning it to a single state, it sets a border in its evolution space. Repeatedly asking the system 'are you beyond the border?' makes this limit impenetrable. As the border can be designed by choosing the measured observable, QZD allows one to dynamically tailor the system's Hilbert space. Recent proposals, particularly in the cavity quantum electrodynamics context4,5, highlight the interest of QZD for quantum state engineering tasks6-11, which are the key to quantum-enabled technologies and quantum information processing. We report the observation of QZD in the 51-dimensional Hilbert space of a large angular momentum J D 25. Continuous selective interrogation limits the evolution of this angular momentum to an adjustable multi-dimensional subspace. This confined dynamics leads to the production of non-classical 'Schr?dinger cat' states12,13, quantum superpositions of angular momenta pointing in different directions. These states are promising for sensitive metrology of electric and magnetic fields. This QZD approach could also be generalized to cavity and circuit quantum electrodynamics experiments4,5,13 by replacing the angular momentum with a photonic harmonic oscillator.
机译:在量子世界中,被监视的箭头永远不会移动。这就是量子芝诺效应1。反复询问量子系统“您是否仍处于初始状态?”通过测量反向作用来阻止其连贯的演变。量子芝诺动力学(QZD;参考文献2,3)为系统提供了更大的自由度。它没有将其固定到单个状态,而是在其演化空间中设置了边界。反复询问系统“您是否越界?”使此限制难以理解。由于可以通过选择测量的可观察区域来设计边界,因此QZD允许人们动态地定制系统的希尔伯特空间。最近的提议,特别是在腔体量子电动力学背景下的研究4,5,突出了QZD对量子态工程任务6-11的兴趣,这是量子使能技术和量子信息处理的关键。我们报告了在大角动量J D 25的51维希尔伯特空间中对QZD的观察。连续的选择性询问将这种角动量的演化限制为可调整的多维子空间。这种有限的动力学导致产生非经典的“薛定ding猫”状态12、13,角动量的量子叠加指向不同的方向。这些状态有望用于敏感的电场和磁场计量。通过用光子谐波振荡器代替角动量,这种QZD方法也可以推广到腔和电路量子电动力学实验4、5、13。

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