Mondal Partha, P Venkatachalam, Singh Radhakant, Shelwade Sneha, Sushma Gali, Selvaraja Shankar K
Appl Opt. 2023 May 10;62(14):3703-3709. doi: 10.1364/AO.488219.
We demonstrate the linear and nonlinear characterization of a plasma-enhanced chemical vapor deposited silicon-rich silicon nitride (SRSN) racetrack ring resonator for on-chip applications within the telecommunication wavelength range. The SRSN waveguide parameters are optimized by employing the refractive index profile measured by ellipsometry to achieve flat dispersion in the telecom band. Furthermore, we measure the thermo-optic coefficient of the micro-resonator by analyzing the temperature-dependent transmission spectra and assess it to be 3.2825×10 . Additionally, we study power-dependent transmission spectra to investigate the effect of local heating and nonlinear absorption. The power-dependent transmission spectra exhibit a blueshifting of the resonance peak in the visible and near-IR regions, which indicates the presence of nonlinear losses in that range. The power-dependent transmission spectra almost remain unchanged in the telecom band, revealing the absence of nonlinear losses and excellent thermal stability in that wavelength range. Our experimental results reveal that the SRSN-based structure can be employed potentially to realize linear and nonlinear applications in the telecom band.
我们展示了一种用于电信波长范围内片上应用的等离子体增强化学气相沉积富硅氮化硅(SRSN)环形谐振器的线性和非线性特性。通过采用椭偏仪测量的折射率分布来优化SRSN波导参数,以在电信频段实现平坦色散。此外,我们通过分析与温度相关的传输光谱来测量微谐振器的热光系数,并评估其为3.2825×10 。此外,我们研究了与功率相关的传输光谱,以研究局部加热和非线性吸收的影响。与功率相关的传输光谱在可见光和近红外区域呈现出共振峰的蓝移,这表明在该范围内存在非线性损耗。与功率相关的传输光谱在电信频段几乎保持不变,这表明在该波长范围内不存在非线性损耗且具有出色的热稳定性。我们的实验结果表明,基于SRSN的结构有可能用于实现电信频段的线性和非线性应用。