论文标题
腔中冷原子的基态双重性
Ground state bistability of cold atoms in a cavity
论文作者
论文摘要
我们通过在集体强耦合方面使用单一的光谐振器模式,在实验上证明了两个高精子原子基态之间的光学双重性。尽管在熟悉的情况下,双态区域是通过原子饱和度创建的,但我们报告了高量子纯度状态之间的效果,这对于将来的信息存储至关重要。过渡的非线性是由冷,捕获原子和稳定性之间的腔辅助泵送引起的,这取决于两个驱动激光器的强度。我们用最近的一阶,驱动驱动相变的范式来解释这种现象,其中分别将传输和驱动场理解为阶顺序和控制参数。在其中一个控件中,无限驱动恢复了饱和诱导的双重性。当两个对照参数中的任何一个都在跨双稳定性区域重复扫描,并且基础相图的预测与半经典均值场理论相一致时,通过序列参数中的滞后进行了实验确认过渡的顺序。
We experimentally demonstrate an optical bistability between two hyperfine atomic ground states, using a single mode of an optical resonator in the collective strong coupling regime. Whereas in the familiar case, the bistable region is created through atomic saturation, we report an effect between states of high quantum purity, which is essential for future information storage. The nonlinearity of the transitions arise from cavity-assisted pumping between ground states of cold, trapped atoms and the stability depends on the intensity of two driving lasers. We interpret the phenomenon in terms of the recent paradigm of first-order, driven-dissipative phase transitions, where the transmitted and driving fields are understood as the order and control parameters, respectively. The saturation-induced bistability is recovered for infinite drive in one of the controls. The order of the transition is confirmed experimentally by hysteresis in the order parameter when either of the two control parameters is swept repeatedly across the bistability region and the underlying phase diagram is predicted in line with semiclassical mean-field theory.