Berdnikov Yury, Shtrom Igor, Rozhavskaya Maria, Lundin Wsevolod, Hendricks Nicholas, Grange Rachel, Timofeeva Maria
Faculty of Physics, St. Petersburg University, Universitetskaya Emb. 13B, 199034, Saint-Petersburg, Russia.
Institute for Analytical Instrumentation RAS, 190103, Saint-Petersburg, Russia.
Nanotechnology. 2021 Jul 16;32(40). doi: 10.1088/1361-6528/ac1017.
Engineering nonlinear optical responses at the microscale is a key topic in photonics for achieving efficient frequency conversion and light manipulation. Gallium nitride (GaN) is a promising semiconductor material for integrated nonlinear photonic structures. In this work, we use epitaxially grown GaN microwires as nonlinear optical whispering gallery and Fabry-Perot resonators. We demonstrate an effective generation of second-harmonic and polarization-dependent signals of whispering gallery and Fabry-Perot modes (FPM) under near-infrared (NIR) excitation. We show how the rotation of the excitation polarization can be used to control and switch between Fabry-Perot and whispering gallery modes in tapered GaN microwire resonators. We demonstrate the enhancement of two-photon luminescence in the yellow-green spectral range due to efficient coupling between whispering gallery, FPM, and excitonic states in GaN. This luminescence enhancement allows us to conveniently visualize whispering gallery modes excited with a NIR source. Such microwire resonators can be used as compact microlasers or sensing elements in photonic sensors.
在微尺度上设计非线性光学响应是光子学中实现高效频率转换和光操控的关键课题。氮化镓(GaN)是用于集成非线性光子结构的一种很有前景的半导体材料。在这项工作中,我们将外延生长的GaN微线用作非线性光学回音壁和法布里 - 珀罗谐振器。我们展示了在近红外(NIR)激发下,有效产生回音壁和法布里 - 珀罗模式(FPM)的二次谐波和偏振相关信号。我们展示了如何利用激发偏振的旋转来控制并在锥形GaN微线谐振器中的法布里 - 珀罗模式和回音壁模式之间切换。我们证明了由于GaN中回音壁模式、FPM和激子态之间的有效耦合,黄绿光谱范围内的双光子发光得到增强。这种发光增强使我们能够方便地可视化由近红外源激发的回音壁模式。此类微线谐振器可用作光子传感器中的紧凑型微激光器或传感元件。