Otsuka K, Chu S-C, Lin C-C, Tokunaga K, Ohtomo T
Department of Human and Information Science, Tokai University, Hiratsuka, Kanagawa, Japan.
Opt Express. 2009 Nov 23;17(24):21615-27. doi: 10.1364/OE.17.021615.
To provide the underlying physical mechanism for formations of spatial- and polarization-entangled lasing patterns (namely, SPEPs), we performed experiments using a c-cut Nd:GdVO(4) microchip laser with off-axis laser-diode pumping. This extends recent work on entangled lasing pattern generation from an isotropic laser, where such a pattern was explained only in terms of generalized coherent states (GCSs) formed by mathematical manipulation. Here, we show that polarization-resolved transverse patterns can be well explained by the transverse mode-locking of distinct orthogonal linearly polarized Ince-Gauss (IG) mode pairs rather than GCSs. Dynamic properties of SPEPs were experimentally examined in both free-running and modulated conditions to identify long-term correlations of IG mode pairs over time. The complete chaos synchronization among IG mode pairs subjected to external perturbation is also demonstrated.
为了揭示空间和偏振纠缠激光模式(即SPEP)形成的潜在物理机制,我们使用了具有离轴激光二极管泵浦的c切割Nd:GdVO(4)微芯片激光器进行了实验。这扩展了近期关于从各向同性激光器产生纠缠激光模式的工作,在该工作中,这种模式仅通过数学操作形成的广义相干态(GCS)来解释。在这里,我们表明,偏振分辨横向模式可以通过不同正交线性偏振的因斯 - 高斯(IG)模式对的横向锁模而不是GCS得到很好的解释。在自由运行和调制条件下对SPEP的动态特性进行了实验研究,以确定IG模式对随时间的长期相关性。还展示了在外部扰动下IG模式对之间的完全混沌同步。