论文标题

使用极化效应的正电子密度测量

Positronium density measurements using polaritonic effects

论文作者

Cortese, Erika, Cassidy, David B., De Liberato, Simone

论文摘要

正常物理(PS)物理学的最新实验进步使得可能会发生PS-PS相互作用的密集PS合奏,从而导致PS $ _2 $分子的产生,并为实现PS Bose-Ienstein Condens(BEC)的实现铺平了道路。为了实现后一个目标,开发新方法以实时测量PS密度是有利的。在这里,我们描述了一种可能使用偏光量方法来执行此操作的方法:使用逼真的实验参数,我们证明,密集的PS气体可以与分布式bragg反射剂微腔的光子场强烈耦合。在这种强烈的耦合方案中,系统的光谱由两个由真空兔裂片隔开的杂交正电子阳性谐振共振,该共振与PS密度的平方根成正比。鉴于可以在亚周期时间尺度上创建极性子,因此对真空狂犬分裂的光谱测量可以用作与PS BEC形成相关的制度中的超快速PS密度测量。此外,我们展示了阳性 - 摩尔体子如何潜在地进入Ultrastrong轻质耦合方案,从而引入了一个根本新颖的平台来探索其非扰动现象学。

Recent experimental advances in Positronium (Ps) physics have made it possible to produce dense Ps ensembles in which Ps-Ps interactions may occur, leading to the production of Ps$_2$ molecules and paving the way to the realization of a Ps Bose-Einstein Condensate (BEC). In order to achieve this latter goal it would be advantageous to develop new methods to measure Ps densities in real-time. Here we describe a possible approach to do this using polaritonic methods: using realistic experimental parameters we demonstrate that a dense Ps gas can be strongly coupled to the photonic field of a distributed Bragg reflector microcavity. In this strongly coupled regime, the optical spectrum of the system is composed of two hybrid positronium-polariton resonances separated by the vacuum Rabi splitting, which is proportional to the square root of the Ps density. Given that polaritons can be created on a sub-cycle timescale, a spectroscopic measurement of the vacuum Rabi splitting could be used as an ultra-fast Ps density measurement in regimes relevant to Ps BEC formation. Moreover, we show how positronium-polaritons could potentially enter the ultrastrong light-matter coupling regime, introducing a radically novel platform to explore its non-perturbative phenomenology.

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