【24h】

Mechanical systems in the quantum regime

机译:量子状态下的机械系统

获取原文
获取外文期刊封面目录资料

摘要

Mechanical systems are ideal candidates for studying quantum behavior of macroscopic objects. To this end, a mechanical resonator has to be cooled to its ground state and its position has to be measured with great accuracy. Currently, various routes to reach these goals are being explored. In this review, we discuss different techniques for sensitive position detection and we give an overview of the cooling techniques that are being employed. The latter includes sideband cooling and active feedback cooling. The basic concepts that are important when measuring on mechanical systems with high accuracy and/or at very low temperatures, such as thermal and quantum noise, linear response theory, and backaction, are explained. From this, the quantum limit on linear position detection is obtained and the sensitivities that have been achieved in recent opto- and nanoelectromechanical experiments are compared to this limit. The mechanical resonators that are used in the experiments range from meter-sized gravitational wave detectors to nanomechanical systems that can only be read out using mesoscopic devices such as single-electron transistors or superconducting quantum interference devices. A special class of nanomechanical systems is bottom-up fabricated carbon-based devices, which have very high frequencies and yet a large zero-point motion, making them ideal for reaching the quantum regime. The mechanics of some of the different mechanical systems at the nanoscale is studied. We conclude this review with an outlook of how state-of-the-art mechanical resonators can be improved to study quantum mechanics.
机译:机械系统是研究宏观物体的量子行为的理想选择。为此,必须将机械谐振器冷却至其基态,并且必须高精度地测量其位置。当前,正在探索实现这些目标的各种途径。在这篇综述中,我们讨论了用于敏感位置检测的不同技术,并对所采用的冷却技术进行了概述。后者包括边带冷却和主动反馈冷却。解释了在高精度和/或非常低的温度下对机械系统进行测量时非常重要的基本概念,例如热和量子噪声,线性响应理论和反向作用。由此,获得了线性位置检测的量子极限,并将在最近的光机电实验中获得的灵敏度与该极限进行了比较。实验中使用的机械谐振器范围从米大小的重力波检测器到只能使用介观设备(例如单电子晶体管或超导量子干扰设备)读取的纳米机械系统。自底向上制造的碳基器件是一类特殊的纳米机械系统,它具有很高的频率和很大的零点运动,使其成为达到量子态的理想选择。研究了一些不同的机械系统在纳米尺度上的力学。我们以对如何改进最先进的机械谐振器以研究量子力学的展望结束本综述。

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