Quadrature Squeezing Enhances Wigner Negativity in a Mechanical Duffing Oscillator

Christian A. Rosiek, Massimiliano Rossi, Albert Schliesser, Anders S. Sørensen
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Abstract

Generating macroscopic nonclassical quantum states is a long-standing challenge in physics. Anharmonic dynamics is an essential ingredient to generate these states, but for large mechanical systems, the effect of the anharmonicity tends to become negligible compared with the effect of decoherence. As a possible solution to this challenge, we propose using a motional squeezed state as a resource to effectively increase the anharmonicity. We analyze the production of negativity in the Wigner distribution of a quantum anharmonic resonator initially in a squeezed state. We find that initial squeezing increases the rate at which negativity is generated. We also analyze the effect of two common sources of decoherence—namely, energy damping and dephasing—and find that the detrimental effects of energy damping are suppressed by strong squeezing. In the limit of large squeezing, which is needed for state-of-the-art systems, we find good approximations for the Wigner function. Our analysis is significant for current experiments attempting to prepare macroscopic mechanical systems in genuine quantum states. We provide an overview of several experimental platforms featuring nonlinear behaviors and low levels of decoherence. In particular, we discuss the feasibility of our proposal with carbon nanotubes and levitated nanoparticles.

Abstract Image

正交挤压增强机械达芬振荡器的维格纳负性
生成宏观非经典量子态是物理学中一个长期存在的挑战。非谐波动力学是生成这些状态的基本要素,但对于大型机械系统来说,与退相干效应相比,非谐波效应往往变得微不足道。为了解决这一难题,我们建议使用运动挤压态作为有效提高非谐波性的资源。我们分析了最初处于挤压态的量子非谐振子的维格纳分布中负性的产生。我们发现,初始挤压会增加负性产生的速率。我们还分析了两种常见的退相干源(即能量阻尼和去相干)的影响,发现强挤压会抑制能量阻尼的有害影响。在最先进系统所需的大挤压极限下,我们找到了维格纳函数的良好近似值。我们的分析对于当前试图制备真正量子态的宏观机械系统的实验具有重要意义。我们概述了几个具有非线性行为和低水平退相干性的实验平台。我们特别讨论了我们的建议在碳纳米管和悬浮纳米粒子上的可行性。
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