Bellucci Stefano, Fitio Volodymyr, Yaremchuk Iryna, Vernyhor Oleksandr, Bobitski Yaroslav
INFN-Laboratori Nazionali di Frascati, Via E. Fermi 54, 00044 Frascati, Italy.
Department of Photonics, Lviv Polytechnic National University, Bandera Street 12, 79013 Lviv, Ukraine.
Nanomaterials (Basel). 2021 Dec 28;12(1):72. doi: 10.3390/nano12010072.
In this work the features of the resonance in a rectangular dielectric surface-relief gratings, illuminated with a limited cross-section Gaussian beam, have been studied. The rigorous coupled wave method and beam decomposition into the plane waves by the Fourier transform have been used. It is shown that there is a resonant wavelength for each thickness of the dielectric grating. The value of resonant wavelength depends on the beam angle of incidence on the gratings. Moreover, the two types of resonances can occur in the grating at certain grating parameters. The power reflection coefficient is practically equal to unity for the first type of resonance and is much smaller than unity, for the second one. The obtained results extend the knowledge regarding the nature of the waveguide resonance in the dielectric grating, considering the limited cross section beam, and they can increase its use in many applications.
在这项工作中,研究了用有限横截面高斯光束照射的矩形介质表面浮雕光栅中的共振特性。采用了严格耦合波方法和通过傅里叶变换将光束分解为平面波的方法。结果表明,对于介质光栅的每个厚度都存在一个共振波长。共振波长的值取决于光束在光栅上的入射角。此外,在特定的光栅参数下,光栅中会出现两种类型的共振。对于第一种类型的共振,功率反射系数实际上等于1,而对于第二种类型的共振,功率反射系数远小于1。所得结果扩展了关于考虑有限横截面光束的介质光栅中波导共振性质的认识,并且可以增加其在许多应用中的用途。