Related Experiment Video
Updated: Jan 20, 2026

A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference
Published on: September 5, 2019
Demonstration of two-dimensional photonic crystals based on silicon carbide
Bong-Shik Song1, Shota Yamada, Takashi Asano
1School of Information and Communication Engineering, Sungkyunkwan University, Jangan-Gu, Suwon Gyeonggi-do, South Korea. songwiz@skku.edu
Abstract:
We demonstrate two-dimensional photonic crystals of silicon carbide (SiC)-a wide bandgap semiconductor and one of the hardest materials-at near-infrared wavelengths. Although the refractive index of SiC is lower than that of a conventional semiconductor such as GaAs or Si, we show theoretically that a wide photonic bandgap, a broadband waveguide, and a high-quality nanocavity comparable to those of previous photonic crystals can be obtained in SiC photonic crystals. We also develop a process for fabricating SiC-based photonic crystals that experimentally show a photonic bandgap of 200 nm, a waveguide with a 40-nm bandwidth, and a nanocavity with a high quality factor of 4,500. This demonstration should stimulate further development of resilient and stable photonics at high power and high temperature analogous to SiC power electronics.
Related Concept Videos
07:56A Photonic System for Generating Unconditional Polarization-Entangled Photons Based on Multiple Quantum Interference
12:19Measurement of Quantum Interference in a Silicon Ring Resonator Photon Source
13:02Fabrication of 1-D Photonic Crystal Cavity on a Nanofiber Using Femtosecond Laser-induced Ablation
12:18Microwave Photonics Systems Based on Whispering-gallery-mode Resonators
11:08Fabrication And Characterization Of Photonic Crystal Slow Light Waveguides And Cavities
09:29Utilization of Plasmonic and Photonic Crystal Nanostructures for Enhanced Micro- and Nanoparticle Manipulation

