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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Signatures of thermal hysteresis in Tamm-wave propagation
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Signatures of thermal hysteresis in Tamm-wave propagation

机译:TAMM波传播中热滞后的签名

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We numerically solved the boundary-value problem for Tamm waves (which may also be classified as Uller Zenneck waves here) guided by the planar interface of a homogeneous isotropic dissipative dielectric (HIDD) material and a periodically multilayered isotropic dielectric material. The HIDD material was chosen to be VO2, which, at optical wavelengths, has a temperature-dependent refractive index with a hysteresis feature, i.e., the temperature-dependence of its refractive index varies depending upon whether the temperature is increasing or decreasing. A numerical code was implemented to extract solutions of the dispersion equation at a fixed wavelength for both p-and s-polarization states over the temperature range [50,80]degrees C. A multitude of Tamm waves of both linear polarization states were found, demonstrating a clear demarcation of the heating and cooling phases in terms of wavenumbers and propagation distances. Thereby, the signatures of thermal hysteresis in Tamm-wave propagation were revealed. (C) 2017 Optical Society of America
机译:我们在数值上解决了TAMM波的边值问题(这里也可以被分类为ULLER Zenneck波,由均匀各向同性耗散介电(HIDD)材料的平面界面和周期性多层各向同性介电材料引导。选择HIDD材料是VO2,其在光波长下,其具有滞后特征的温度依赖性折射率,即折射率的温度依赖性根据温度是否增加或降低而变化。实现了数值代码以在温度范围内提取在固定波长的固定波长下的分散方程的解,并在温度范围内进行P和S偏振状态。找到两种线性偏振态的多个TAMM波在波数和传播距离方面证明了加热和冷却阶段的明确划分。由此,揭示了Tamm-波传播中的热滞后的签名。 (c)2017年光学学会

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