论文标题
超级和亚基原子中光相变的签名
Signatures of optical phase transitions in super- and subradiant arrays of atoms
论文作者
论文摘要
与物质相互作用的谐振光可以支持可极化介质的不同阶段,以及两个这样的阶段共存的光学双重性。在这里,我们确定了光相变和光学双重性的特征,该特征映射到冷原子平面阵列中的散射光。提出了有关如何探索超级型和极端次级状态在光锥外部的极端次级状态的方法。仅在分析的几种兴趣案例中得出了固有光学双极相互作用支持的固有光学双极相互作用的固有光学双极相互作用的合作阈值和强度制度。次级国家需要较低的强度,但与超级支持状态相比,非平凡阶段的存在更强。传输的光揭示了平均场理论预测的相变和双态性的开始,因为相干和不连贯的信号和磁滞中的大型跳跃。在量子溶液中,在激发水平种群的增强量子波动中鉴定了相变的痕迹。
Resonant light interacting with matter can support different phases of a polarizable medium, and optical bistability where two such phases coexist. Here we identify signatures of optical phase transitions and optical bistability mapped onto scattered light in planar arrays of cold atoms. Methods on how to explore such systems in superradiant, and extreme subradiant states existing outside the light cone, are proposed. The cooperativity threshold and intensity regimes for the intrinsic optical bistability, supported by resonant dipole-dipole interactions alone, are derived in several cases of interest analytically. Subradiant states require lower intensities, but stronger cooperativity for the existence of non-trivial phases than superradiant states. The transmitted light reveals the onset of phase transitions and bistability that are predicted by mean-field theory as large jumps in coherent and incoherent signals and hysteresis. In the quantum solution, traces of phase transitions are identified in enhanced quantum fluctuations of excited level populations.