论文标题

2D红外置口滤波器的双角可调性:分析,实验,物理

Dual angular tunability of 2D infrared notch filters: Analysis, experiments, physics

论文作者

Ko, Y. H., Lee, K. J., Simlan, F. A., Gupta, N., Magnusson, R.

论文摘要

二维(2D)谐振光栅通过在线性极化下控制发射率(POI)来实现双角度可调性。如果将POI设置为垂直于电场矢量(S极化或横向电动(TE)极化),则激发的TE模式可提供光谱调整。正交传播的TM模式在角度上很强。相反,如果将POI设置为p极化,则前引用的TM模式将提供调整。通过使用二阶有效中等理论(EMT)将2D晶格分解为同等的1D光栅,列出了对基本物理过程的详细解释。即使对于具有3个折射率对比度的折射率对比度的强制调制的晶格,这种情况也非常有效。通过适当的设计和相应的实验,展示了一个广泛可调的凹口滤波器,覆盖了长波红外带。在实验上,将入射率角度变化为16度,在频带上跨过0.5 um的TM极化调音中的凹口通道,TE通道保持在恒定波长处。简要研究了源自对角线泄漏模式的共振通道的有趣外观。提出的分析和实验将有助于实现不同的2D可调滤波器,同时提供方法,以详细了解近乎田间和模式结构的服务人。

Two-dimensional (2D) resonant gratings enable dual angular tunability by controlling the plane of incidence (POI) under linear polarization. If the POI is set to be perpendicular to the electric field vector (s-polarization or transverse electric (TE) polarization), an excited TE mode provides spectral tuning. The orthogonally propagating TM mode is robust in angle. Conversely, if the POI is set for p-polarization, an ex-cited TM mode provides the tuning. Detailed explanations of the underlying physical processes are set forth by decomposing the 2D lattice into equivalent 1D gratings using second-order effective-medium theory (EMT). This is shown to work extremely well even for a strongly modulated lattice with refractive-index contrast of 3. With proper design and corresponding experiments, a widely tunable notch filter covering longwave infrared bands is demonstrated. Experimentally varying the incidence angle up to 16 degree, a notch channel in TM polarization tunes across a band exceeding 0.5 um with the TE channel remaining at a constant wavelength. The interesting appearance of a resonance channel originating in diagonally propagating leaky modes is briefly examined. The analysis and experiments presented will be useful for realizing diverse 2D tunable filters while furnishing methodology for detailed understanding of the attendant near fields and mode structure.

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