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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Subwavelength optical spatial solitons and three-dimensional localization in disordered ferroelectrics Toward metamaterials of nonlinear origin
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Subwavelength optical spatial solitons and three-dimensional localization in disordered ferroelectrics Toward metamaterials of nonlinear origin

机译:亚波长光学空间孤子和无序铁电体中的三维定位向非线性起源的超材料

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摘要

We predict the existence of a class of multidimensional light localizations in out-of-equilibrium ferroelectric crystals. In two dimensions, the nondiffracting beams form at an arbitrary low-power level and propagate even when their width is well below the optical wavelength. In three dimensions, a subwavelength light bullet is found. The effects emerge when compositionally disordered crystals are brought to their metastable glassy state, and leading to the suppression of evanescent waves, they can have a profound impact on super-resolved imaging and ultradense optical storage, resembling metamaterials in many ways.
机译:我们预测不平衡铁电晶体中一类多维光定位的存在。在二维中,无衍射光束以任意的低功率水平形成并传播,即使其宽度远低于光波长也是如此。在三个维度上,发现了一个亚波长的光弹。当成分无序的晶体进入亚稳态玻璃态并导致e逝波受到抑制时,就会出现这种效应,它们对超分辨成像和超致密光学存储可能会产生深远影响,在许多方面类似于超材料。

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