Department of Physics and National Center for Theoretical Sciences, National Cheng-Kung University, Tainan 701, Taiwan.
Sci Rep. 2012;2:869. doi: 10.1038/srep00869. Epub 2012 Nov 16.
We show how to realize a single-photon Dicke state in a large one-dimensional array of two-level systems, and discuss how to test its quantum properties. The realization of single-photon Dicke states relies on the cooperative nature of the interaction between a field reservoir and an array of two-level-emitters. The resulting dynamics of the delocalized state can display Rabi-like oscillations when the number of two-level emitters exceeds several hundred. In this case, the large array of emitters is essentially behaving like a "mirror-less cavity". We outline how this might be realized using a multiple-quantum-well structure or a dc-SQUID array coupled to a transmission line, and discuss how the quantum nature of these oscillations could be tested with an extension of the Leggett-Garg inequality.
我们展示了如何在一维大的二维系统阵列中实现单光子 Dicke 态,并讨论了如何测试其量子特性。单光子 Dicke 态的实现依赖于场储层与二维发射器阵列之间相互作用的协作性质。当二维发射器的数量超过几百个时,非定域态的动力学可以显示出类 Rabi 振荡。在这种情况下,大的发射器阵列本质上表现得像一个“无镜腔”。我们概述了如何使用多量子阱结构或与传输线耦合的直流超导量子干涉仪 (dc-SQUID) 阵列来实现这一点,并讨论了如何通过 Leggett-Garg 不等式的扩展来测试这些振荡的量子性质。