Komlenok Maxim S, Dezhkina Margarita A, Sedov Vadim S, Klimenko Oleg A, Dyakov Sergey A, Gippius Nikolay A
Prokhorov General Physics Institute of the Russian Academy of Sciences, Vavilova Street 38, 119991 Moscow, Russia.
Skolkovo Institute of Science and Technology, Bolshoy Boulevard 30, Bld. 1, 121205 Moscow, Russia.
Sensors (Basel). 2022 Jan 22;22(3):829. doi: 10.3390/s22030829.
We are reporting on laser microstructuring of thin nanocrystalline diamond membranes, for the first time. To demonstrate the possibility of microstructuring, we fabricated a diamond membrane, of 9 μm thickness, with a two-dimensional periodic array of closely located chiral elements. We describe the fabrication technique and present the results of the measurements of the infrared transmission spectra of the fabricated membrane. We theoretically studied the reflection, transmission, and absorption spectra of a model structure that approximates the fabricated chiral metamembrane. We show that the metamembrane supports quasiguided modes, which appear in the optical spectra due to grating-assisted diffraction of the guided modes to the far field. Due to the C4 symmetry, the structure demonstrates circular dichroism in transmission. The developed technique can find applications in infrared photonics since diamond is transparent at wavelengths >6 μm and has record values of hardness. It paves the way for creation of new-generation infrared filters for circular polarization.
我们首次报道了对薄纳米晶金刚石膜进行激光微结构化处理。为了证明微结构化的可能性,我们制备了一种厚度为9μm的金刚石膜,其具有紧密排列的手性元素的二维周期性阵列。我们描述了制备技术,并给出了所制备膜的红外透射光谱的测量结果。我们从理论上研究了一个近似所制备的手性超膜的模型结构的反射、透射和吸收光谱。我们表明,该超膜支持准导模,这些准导模由于导模的光栅辅助衍射到远场而出现在光谱中。由于C4对称性,该结构在透射中表现出圆二色性。由于金刚石在波长>6μm时是透明的且具有创纪录的硬度值,所开发的技术可应用于红外光子学。它为创建用于圆偏振的新一代红外滤光片铺平了道路。