Institute for Theoretical Physics, ETH Zurich, 8093 Zürich, Switzerland.
Phys Rev Lett. 2015 Oct 2;115(14):143601. doi: 10.1103/PhysRevLett.115.143601. Epub 2015 Sep 29.
We study the interplay of geometric frustration and interactions in a nonequilibrium photonic lattice system exhibiting a polariton flat band as described by a variant of the Jaynes-Cummings-Hubbard model. We show how to engineer strong photonic correlations in such a driven, dissipative system by quenching the kinetic energy through frustration. This produces an incompressible state of photons characterized by short-ranged crystalline order with period doubling. The latter manifests itself in strong spatial correlations, i.e., on-site and nearest-neighbor antibunching combined with extended density-wave oscillations at larger distances. We propose a state-of-the-art circuit QED realization of our system, which is tunable in situ.
我们研究了在具有极化激元平板带的非平衡光子晶格系统中几何受挫和相互作用的相互作用,该系统由杰纳斯-坎明斯-哈伯德模型的变体描述。我们展示了如何通过受挫来耗尽动能,从而在这样一个驱动、耗散的系统中工程强光子相关性。这产生了一种不可压缩的光子状态,其特点是短程有序的周期性加倍。后者表现为强空间相关性,即局域和最近邻反聚束以及在较大距离处的扩展密度波振荡。我们提出了我们系统的一种最先进的电路 QED 实现,该实现可以现场调节。