Jović D, Petrović M, Belić M, Schröeder J, Jander Ph, Denz C
Opt Express. 2005 Dec 26;13(26):10717-28. doi: 10.1364/opex.13.010717.
Dynamical behavior of counterpropagating (CP) mutually incoherent vector solitons in a 5 x 5 x 23 mm SBN:60Ce photorefractive crystal is investigated. Experimental study is carried out, displaying rich dynamics of three-dimensional CP solitons and higher-order multipole structures, and a theory formulated that is capable of capturing such dynamics. We find that our numerical simulations agree well with the experimental findings for various CP beam structures. Linear stability analysis is also performed, predicting a threshold for the modulational instability of CP beams, and an appropriate control parameter is identified. We attempt at utilizing these results to CP solitons, but find only qualitative agreement with the numerical simulations and experimental findings. However, when broader hyper-Gaussian CP beams are used in simulations, an improved agreement with the theory is obtained.
研究了5×5×23毫米的SBN:60Ce光折变晶体中反向传播(CP)的相互不相干矢量孤子的动力学行为。开展了实验研究,展示了三维CP孤子和高阶多极结构丰富的动力学特性,并建立了一种能够捕捉此类动力学的理论。我们发现,对于各种CP光束结构,我们的数值模拟与实验结果吻合良好。还进行了线性稳定性分析,预测了CP光束调制不稳定性的阈值,并确定了合适的控制参数。我们尝试将这些结果应用于CP孤子,但发现仅与数值模拟和实验结果存在定性的一致性。然而,当在模拟中使用更宽的超高斯CP光束时,与理论的一致性得到了改善。