论文标题

表面诱导的电荷颗粒的破坏和加热

Surface-induced decoherence and heating of charged particles

论文作者

Martinetz, Lukas, Hornberger, Klaus, Stickler, Benjamin A.

论文摘要

超高真空中的悬浮带电的颗粒为量子信息处理,用于量子增强力和扭矩传感,用于探测标准模型以外的物理和量子叠加原理的高质量测试的巨大平台。现有的设置范围从单个原子离子到离子链和晶体,再到带电的分子和纳米颗粒。此类量子系统的未来技术应用将受到附近电极发出的电场波动至关重要的影响,这些电场与悬浮的颗粒的单极和较高的电荷矩相互作用。在本文中,我们提供了一个理论工具箱,用于描述带电纳米对象的旋转和转换量子动力学如何受到近金属和介电表面的影响,其特征在于它们的宏观介电响应。所得的量子主方程描述了由于图像电荷和Casimir-Polder电位以及表面诱导的破坏和加热而导致的一致的表面粒子相互作用,并具有实验观察到的频率和距离尺度。我们明确评估了典型的电荷分布和运动类型的主方程,从而提供了描述和减轻带有带电对象的各种实验中表面诱导的破坏性所需的工具。

Levitating charged particles in ultra-high vacuum provides a preeminent platform for quantum information processing, for quantum-enhanced force and torque sensing, for probing physics beyond the standard model, and for high-mass tests of the quantum superposition principle. Existing setups range from single atomic ions, to ion chains and crystals, to charged molecules and nanoparticles. Future technological applications of such quantum systems will be crucially affected by fluctuating electric fields emanating from nearby electrodes, which interact with the levitated particles' monopole and higher charge moments. In this article, we provide a theoretical toolbox for describing how the rotational and translational quantum dynamics of charged nano- to microscale objects is affected by near metallic and dielectric surfaces, as characterized by their macroscopic dielectric response. The resulting quantum master equations describe the coherent surface-particle interaction, due to image charges and Casimir-Polder potentials, as well as surface-induced decoherence and heating, with the experimentally observed frequency and distance scaling. We explicitly evaluate the master equations for typical charge distributions and types of motion, thereby providing the tools required for describing and mitigating surface-induced decoherence in a variety of experiments with charged objects.

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