Bezus Evgeni A, Bykov Dmitry A, Doskolovich Leonid L
Opt Lett. 2020 Sep 15;45(18):5065-5068. doi: 10.1364/OL.402569.
We propose integrated Gires-Tournois interferometers (GTIs) for guided modes of dielectric slab waveguides. The proposed GTIs consist of one or several dielectric ridge resonators separated by subwavelength-width grooves patterned into an abruptly terminated slab waveguide and operate at oblique incidence of the fundamental transverse-electric-polarized mode. The grooves act as partially reflective mirrors, whereas the end facet of the last ridge works in the total internal reflection regime and reflects all the incident radiation. We show that the single-ridge structure provides a nonlinear staircase-like phase response characteristic for GTIs. By using several properly arranged ridges, one can engineer group delay or group delay dispersion in a required spectral range. As an example, we design a three-ridge GTI providing an almost constant group delay dispersion in a 50-nm-wide wavelength range. The proposed planar GTIs may find application in integrated optical circuits for introducing or compensating for chromatic dispersion.
我们提出了用于介质平板波导导模的集成吉雷斯 - 图尔诺干涉仪(GTI)。所提出的GTI由一个或几个介质脊形谐振器组成,这些谐振器由刻蚀在突然终止的平板波导中的亚波长宽度凹槽隔开,并在基横电偏振模式的斜入射下工作。这些凹槽充当部分反射镜,而最后一个脊的端面在全内反射状态下工作并反射所有入射辐射。我们表明,单脊结构为GTI提供了非线性阶梯状相位响应特性。通过使用几个适当排列的脊,可以在所需的光谱范围内设计群延迟或群延迟色散。例如,我们设计了一种三脊GTI,在50纳米宽的波长范围内提供几乎恒定的群延迟色散。所提出的平面GTI可用于集成光学电路中引入或补偿色散。