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Experiments on Gaussian beams and vortices in optically induced photonic lattices

机译:光诱导光子晶格中高斯光束和涡旋的实验

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We investigate experimentally the propagation of fundamental Gaussian beams and vortices in a two-dimensional photonic lattice optically induced with partially coherent light. We focus on soliton-lattice interactions and vortex-lattice interactions when the lattice is operated in a nonlinear regime. In this case a host of novel phenomena is demonstrated, including soliton-induced lattice dislocation-deformation, soliton hopping and slow-down, and creation of structures akin to optical polarons. In addition, we observe that the nonlinear interaction between a vortex beam and a solitonic lattice leads to lattice twisting due to a transfer of the angular momentum carried by the vortex beam to the lattice. Results demonstrating a clear transition from discrete diffraction to the formation of two-dimensional, discrete fundamental and vortex solitons in a linear lattice are also included. (c) 2005 Optical Society of America.
机译:我们实验研究基本高斯光束和涡旋在部分相干光光学诱导的二维光子晶格中的传播。当晶格在非线性状态下操作时,我们专注于孤子-晶格相互作用和涡旋-晶格相互作用。在这种情况下,展示了许多新颖的现象,包括孤子引起的晶格位错-变形,孤子跳跃和减速以及类似于光学极化子的结构的创建。此外,我们观察到涡流束与孤子晶格之间的非线性相互作用会导致晶格扭曲,这是由于涡流束所携带的角动量转移到晶格所致。还包括表明从离散衍射到线性晶格中二维,离散基本和涡旋孤子形成清晰过渡的结果。 (c)2005年美国眼镜学会。

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