INTENSITY CONTROLLED, NONSPECULAR RESONANT BACK REFLECTION OF LIGHT

Q4 Physics and Astronomy
S. Prosvirnin, V. Khardikov, V. Yachin, V. Plakhtii, N. Sydorchuk
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引用次数: 1

Abstract

Subject and Purpose. Theoretical demonstration of controllable features of a non-conventional resonant back reflection of light, realizable with the aid of a structured silicon-on-metal covering. Methods and Methodology. The investigation has been performed through a full-wave numerical simulation in a finite-element technique. Results. The nonlinear optical properties of a planar structure, involving a set of silicon disks disposed periodically on a silver substrate, have been studied in the Littrow scenario of wave reflection. The structure manifests a bistable resonant reflectivity property. The magnitudes of both specular and back reflection ratios can be controlled by means of varying the incident light intensity. Conclusions. An array of identical silicon disks, placed in a periodic order on a silver substrate, can be employed as an efficiently excitable and tunable nonlinear resonant reflective structure implementing Littrow’s non-specular diffraction scenario. As has been found, the effect of nonlinear response from the silicon disks can be used for implementing a regimen of bistable back reflection, controllable by means of varying the incident wave’s intensity. The nonlinear tunability of the silicon-on-silver structure does promise extensions of the operation area of classical metamaterials of sub-wavelength scale sizes as it offers new
强度控制,光的非镜面共振反射
主题和目的。一个非常规的光的共振背反射的可控特征的理论论证,可实现与一个结构化的金属硅覆盖。方法和方法论。通过有限元技术的全波数值模拟进行了研究。结果。在Littrow波反射场景下,研究了一组周期性放置在银衬底上的硅片的平面结构的非线性光学性质。该结构具有双稳态谐振反射率特性。通过改变入射光的强度,可以控制反射比和反射比的大小。结论。一组相同的硅盘,以周期性顺序放置在银衬底上,可以作为一种有效的可激发和可调谐的非线性谐振反射结构,实现Littrow的非镜面衍射方案。正如已经发现的那样,硅片的非线性响应效应可以用来实现双稳态背反射,通过改变入射波的强度来控制。银上硅结构的非线性可调性为亚波长尺度尺度的经典超材料提供了新的研究方向,从而拓展了其工作领域
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
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