Bin Jingtong, Feng Kerui, Shen Wei, Meng Minjia, Liu Qifa
College of Telecommunication and Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing 210003, China.
Materials (Basel). 2022 Feb 16;15(4):1479. doi: 10.3390/ma15041479.
A GaN-based blue photonic crystal surface emitting laser (PCSEL) featured with membrane configuration was proposed and theoretically investigated. The membrane dimension, photonic crystal (PhC) material, lattice constant and thickness were studied by RCWA (Rigorous Coupled Wave Analysis), FDTD (Finite Difference Time Domain) simulations with the confinement factor and gain threshold as indicators. The membrane PCSEL's confinement factor of active media is of 13~14% which is attributed to multi-pairs of quantum wells and efficient confinement of the mode in the membrane cavity with air claddings. The excellent confinement factor and larger Q factor of resonance mutually contribute to the lower gain threshold of the design (below 400 cm for GaN-PhC with 100 nm thick top and bottom GaN layer, 40 nm hole radius and 40 nm depth). The PhC confinement factor exceeds 13% and 6% for TiO-PhC with 80 nm and 60 nm PhC thickness and 20 nm and 40 nm distance between PhC and active media, respectively. It is around two times larger than that of GaN-PhC, which is attributed to the higher refractive index of TiO that pulls field distribution to the PhC layer.
提出了一种具有薄膜结构的基于氮化镓的蓝光光子晶体表面发射激光器(PCSEL)并进行了理论研究。以限制因子和增益阈值为指标,通过严格耦合波分析(RCWA)、时域有限差分(FDTD)模拟研究了薄膜尺寸、光子晶体(PhC)材料、晶格常数和厚度。薄膜PCSEL有源介质的限制因子为13%~14%,这归因于多量子阱对以及在具有空气包层的薄膜腔中模式的有效限制。优异的限制因子和较大的共振Q因子共同导致了该设计较低的增益阈值(对于顶部和底部氮化镓层厚度为100nm、孔半径为40nm、深度为40nm的氮化镓-PhC,增益阈值低于400cm⁻¹)。对于PhC厚度分别为80nm和60nm、PhC与有源介质之间距离分别为20nm和40nm的TiO₂-PhC,PhC限制因子分别超过13%和6%。它大约是氮化镓-PhC的两倍,这归因于TiO₂的较高折射率将场分布拉向PhC层。