严思琦
- 12. Yan, S., Dong, J., Zheng, A. & Zhang, X. Chip-integrated optical power limiter based on an all-passive micro-ring resonator. Scientific Reports 4, 1–6 (2014)..
- 11. Yan, S. et al. Operation bandwidth optimization of photonic differentiators. Optics Express 23, 18925–18936 (2015)..
- 10. Yan, S., Dong, J., Zheng, A. & Yu, Y. Optical-biased modulator employing a single silicon micro-ring resonator. Optics Communications 368, 58–62 (2016)..
- 9. Yan, S. et al. Photonic linear chirped microwave signal generation based on the ultra-compact spectral shaper using the slow light effect. Optics Letters 42, 3299–3302 (2017)..
- 8. Yan, S. et al. Bandwidth-adaptable silicon photonic differentiator employing a slow light effect. Optics Letters 42, 1596–1599 (2017)..
- 7. Yan, S. et al. Slow-light-enhanced energy efficiency for graphene microheaters on silicon photonic crystal waveguides. Nature Communications 8, 1–8 (2017)..
- 6. Yan, S. et al. Efficient thermal tuning employing metallic microheater with slow-light effect. IEEE Photonics Technology Letters 30, 1151–1154 (2018)..
- 5. Yan, S., Zhu, X., Dong, J., Ding, Y. & Xiao, S. 2D materials integrated with metallic nanostructures: fundamentals and optoelectronic applications. Nanophotonics 9, 1877–1900 (2020)..
- 4. Yan, S., Adcock, J. & Ding, Y. Graphene on Silicon Photonics: Light Modulation and Detection for Cutting-Edge Communication Technologies. Applied Sciences 12, 313 (2021)..
- 3. Yan, S. & Dong, J. Metasurface for highly-efficient on-chip classical and quantum all-optical modulation. Light: Science & Applications 11, 238 (2022)..