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Reflection band gap for a transversely stretched composite cholesteric elastomer

机译:横向拉伸复合胆甾体弹性体的反射带隙

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摘要

We have studied the conduction of electromagnetic waves, impinging normally in a composite cholesteric elastomer slab, doped with metallic inclusions, aleatory distributed in the structure. We performed a theoretical and numerical model, which allows us to obtain the reflection and transmission spectra, when the system is under the action of mechanical forces in a transverse direction with respect to the cholesteric axis. We have found that by stretching the elastomer slab transversely after the critical value of stretching in which the helical structure gets unwound, it transform from a discriminatory circular filter to a polarization-independent device. Intervals of conversion, from right to left circularly-polarized waves in the reflection spectra, are alternated with regions of resembling transmission of both circularly polarized waves. The spectra of the pure cholesteric elastomer can be modulated specially nearby the metallic resonance where the transmittances are greatly damped and reflection is considerably increased.
机译:我们研究了电磁波的传导,通常在复合胆甾体弹性体板中撞击,掺杂有金属夹杂物,分布在结构中的梯子。我们执行了理论和数值模型,其允许我们获得反射和透射光谱,当系统相对于胆甾型轴线的横向方向上的机械力作用时。我们已经发现,通过在螺旋结构展开的拉伸的临界值之后通过横向拉伸弹性体平板,它从鉴别的圆形滤波到偏振无关的装置。转换的间隔,从反射光谱中从右到左围绕圆偏振波,与类似圆偏振波的传输的区域交替。纯胆甾体弹性体的光谱可以特别地在附近的金属共振附近调节,其中透射率大大阻尼,反射显着增加。

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