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Modulation Instability and Pattern Formation in Spatially Incoherent Light Beams

机译:空间非相干光束的调制不稳定性和图案形成

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We report on the experimental observation of modulation instability of partially spatially incoherent light beams in noninstantaneous nonlinear media and show that in such systems patterns can form spontaneously from noise. Incoherent modulation instability occurs above a specific threshold that depends on the coherence properties (correlation distance) of the wave packet and leads to a periodic train of one-dimensional filaments. At a higher value of nonlin-earity, the incoherent one-dimensional filaments display a two-dimensional instability and break up into self-ordered arrays of light spots. This discovery of incoherent pattern formation reflects on many other nonlinear systems beyond optics. It implies that patterns can form spontaneously (from noise) in diverse nonlinear many-body systems involving weakly correlated particles, such as atomic gases at (or near) Bose-Einstein condensation temperatures and electrons in semiconductors at the vicinity of the quantum Hall regime.
机译:我们报告了在非瞬时非线性介质中部分空间不相干光束的调制不稳定性的实验观察结果,并表明在这种系统中,模式可以由噪声自发形成。非相干调制不稳定性发生在特定阈值之上,该阈值取决于波包的相干特性(相关距离),并导致一维细丝的周期性排列。在较高的非线耳噪声值下,不相干的一维灯丝显示二维不稳定性,并分解为自排序的光斑阵列。非相干图案形成的发现反映在光学以外的许多其他非线性系统上。这意味着在涉及弱相关粒子的各种非线性多体系统中,图案可以自发地(从噪声中)形成,例如,处于(或接近)玻色-爱因斯坦凝聚温度的原子气体以及位于量子霍尔范围附近的半导体中的电子。

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