论文标题

纳米机械振荡器的动力隧穿

Dynamical tunnelling of a Nano-mechanical Oscillator

论文作者

Jangid, Piyush, Chauhan, Anil Kumar, Wüster, Sebastian

论文摘要

对经典过渡的量子的研究具有基本的和技术的重要性,并专注于介观设备,其大小可以使经典物理或量子物理学以占主导地位。此类设备的特殊选择在腔量量子 - 宽松力学中可用。我们表明,这些可以利用这些方法来研究量子混沌系统中的动态调节。这种效应深入探究了量子到经典的过渡,因为隧道速率敏感地取决于量子系统解决基本经典相空间的能力。我们表明,在光学机械实验中,有效的普朗克常数可以在数量级上随着可调参数的函数而变化。具体而言,我们考虑在光腔内机械振荡器的中间膜配置,其中腔内场由外部激光源定期调节。我们证明,可以通过明显的四分之一的光学机械相互作用来在一个空间维度上设计混合的常规和混沌相空间。对于这种情况,我们使用浮雕理论探索了预期的动态隧道速率,并绘制出应在实际影响范围内的有效普朗克常数的值。

The study of the quantum to classical transition is of fundamental as well as technological importance, and focusses on mesoscopic devices, with a size for which either classical physics or quantum physics can be brought to dominate. A particularly diverse selection of such devices is available in cavity quantum-optomechanics. We show that these can be leveraged for the study of dynamical-tunnelling in a quantum chaotic system. This effect probes the quantum to classical transition deeply, since tunnelling rates sensitively depend on the ability of the quantum system to resolve the underlying classical phase space. We show that the effective Planck's constant, which determines this phase space resolution, can be varied over orders of magnitude as a function of tunable parameters in an opto-mechanical experiment. Specifically, we consider a membrane-in-the-middle configuration of a mechanical oscillator within an optical cavity, where the intracavity field is modulated periodically by the external laser source. We demonstrate that a mixed regular and chaotic phase space can be engineered in one spatial dimension, through a significant quartic opto-mechanical interaction. For that case, we explore the expected dynamical tunnelling rates using Floquet theory and map out values of the effective Planck's constant that should be within practical reach.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源