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Scale-free optical propagation in out-of-equilibrium ferroelectric crystals

机译:失衡铁电晶体中的无标度光学传播

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In this paper we describe recent progress in the study of scale-free optical propagation in super-cooled nonergodic ferroelectrics. Our experimental and theoretical findings indicate that a regime can be found in which diffusion-driven photorefractive effects can fully annul the diffraction of focused laser beams. This demonstrates that diffraction can be systematically eliminated from an optical system and not simply compensated, with fundamental implications for optical imaging and microscopy. The effect transfers directly from the paraxial regime into the non-paraxial regime described by the Helmholtz Equation, and suggests a means to achieve the propagation of super-resolved optical images. The result is a nonlinear-based metamaterial, even though the underlying nano-structuring of the ferroelectric is random and the effect is both non-absorptive and wavelengthindependent for a wide spectrum.
机译:在本文中,我们描述了过冷非遍历铁电体中无标度光传播研究的最新进展。我们的实验和理论发现表明,可以找到一种机制,其中扩散驱动的光折变效应可以完全消除聚焦激光束的衍射。这表明衍射可以从光学系统中被系统地消除,而不是简单地得到补偿,这对光学成像和显微术具有根本的意义。该效应直接从近轴状态转换为Helmholtz方程描述的非近轴状态,并提出了一种实现超分辨光学图像传播的方法。结果是基于非线性的超材料,即使铁电体的基本纳米结构是随机的,并且在宽光谱范围内,其效果也不是吸收性的,也不依赖于波长。

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