【24h】

Quantum stabilization of photonic spatial correlations

机译:光子空间相关的量子稳定

获取原文
获取原文并翻译 | 示例
       

摘要

The driven, dissipative Bose-Hubbard model (BHM) provides a generic description of collective phases of interacting photons in cavity arrays. In the limit of strong optical nonlinearities (hard-core limit), the BHM maps on the dissipative, transverse-field XY model (XYM). The steady-state of the XYM can be analyzed using mean-field theory, which reveals a plethora of interesting dynamical phenomena. For example, strong hopping combined with a blue-detuned drive, leads to an instability of the homogeneous steady-state with respect to antiferromagnetic fluctuations. In this paper, we address the question whether such an antiferromagnetic instability survives in the presence of quantum correlations beyond the mean-field approximation. For that purpose, we employ a self-consistent 1/z expansion for the density matrix, where z is the lattice coordination number, i.e. the number of nearest neighbors for each site. We show that quantum fluctuations stabilize a new homogeneous steady-state with antiferromagnetic correlations in agreement with exact numerical simulations for finite lattices. The latter manifests itself as short-ranged oscillations of the first and second-order spatial coherence functions of the photons emitted by the array.
机译:驱动的耗散的Bose-Hubbard模型(BHM)提供了在腔阵列中相互作用的集体相的通用描述。在强光学非线性(硬核心极限)的极限中,在耗散,横向场XY模型(XYM)上的BHM地图。可以使用平均场理论分析XYM的稳定状态,揭示了一种有趣的动态现象。例如,强烈跳跃与蓝色旋转驱动器相结合,导致均匀稳态相对于反铁磁波动的不稳定性。在本文中,我们解决了这种反铁磁不稳定在超出平均场近似的量子相关性的情况下存在的问题。为此目的,我们为密度矩阵采用自我一致的1 / z扩展,其中Z是晶格协调号,即每个站点的最近邻居的数量。我们表明量子波动稳定了一种新的均匀稳态,与反铁磁性相关性,与有限晶格的确切数值模拟相一致。后者表现为由阵列发射的光子的第一和二阶空间相干功能的短途振荡。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号