Dr Pawan Mishra
Timau a rolau for Pawan Mishra
Cydymaith Ymchwil
Mater cyddwysedig a ffotoneg
Cyhoeddiad
2025
- Albeladi, F. T. et al. 2025. On-chip gain elements for integrated photonics. Optics Express 33 (25), pp.52356-52372. (10.1364/OE.573505)
- Jandu, G. M. et al. 2025. Optical gain in O-band active regions with multiple dot-in-well layers. APL Photonics 10 (10) 106112. (10.1063/5.0275039)
- Mishra, P. et al. 2025. Achieving selectivity and reduced absorption for low loss monolithic InAs QD based III-V photonic integration. Journal of Physics D: Applied Physics 58 (26) 265104. (10.1088/1361-6463/ade450)
- Mishra, P. et al. 2025. High temperature operation of co-doped InAs quantum dot laser for O-band emission. IEEE Photonics Journal 17 (3) 0600606. (10.1109/jphot.2025.3560443)
- Park, J. et al., 2025. High operating temperature (> 200 °C) InAs/GaAs quantum-dot laser with co-doping technique. Journal of Physics D: Applied Physics 58 (18) 185101. (10.1088/1361-6463/adc275)
2024
- Mishra, P. et al. 2024. Achieving O-band InAs quantum dot laser operation at 200 °C. Presented at: 2024 IEEE 29th International Semiconductor Laser Conference (ISLC) Orlando, FL, USA 29 September - 02 October 2024. 2024 IEEE 29th International Semiconductor Laser Conference (ISLC). IEEE. , pp.1-2. (10.1109/islc57752.2024.10717409)
- Albeladi, F. T. et al., 2024. InAs quantum dot-based one- and two-port multimode interference reflectors for integrated photonic devices: design, fabrication, and evaluation. Presented at: SPIE OPTO 2024 San Francisco, CA, USA January 2024. Proceedings Novel In-Plane Semiconductor Lasers XXIII. Vol. 12905.SPIE. , pp.40. (10.1117/12.3003224)
2023
- Albeladi, F. T. et al. 2023. Multi-mode interference reflector for integrated photonics. Presented at: 2023 IEEE Photonics Conference (IPC) 12-16 November 2023. Proceedings 2023 IEEE Photonics Conference (IPC). IEEE. (10.1109/IPC57732.2023.10360650)
- Enderson, A. et al. 2023. Monolithic InAs QDs based active-passive integration for photonic integrated circuits. Presented at: 2023 IEEE Photonics Conference (IPC) 12-16 November 2023. Proceedings 2023 IEEE Photonics Conference (IPC). IEEE. (10.1109/IPC57732.2023.10360634)
- Albeladi, F. T. et al., 2023. Realisation of multi-mode reflector lasers for integrated photonics. Presented at: Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC) 26-30 June 2023. 2023 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC). IEEE. (10.1109/CLEO/Europe-EQEC57999.2023.10231858)
- Albeladi, F. T. et al. 2023. Design and characterisation of multi-mode interference reflector lasers for integrated photonics. Journal of Physics D: Applied Physics 56 (38) 384001. (10.1088/1361-6463/acdb80)
2022
- Albeladi, F. T. et al. 2022. Multi-mode interference reflector based InAs-QD laser. Presented at: 28th International Semiconductor Laser Conference (ISLC) Matsue, Japan 16-19 October 2022. Proceedings of 28th International Semiconductor Laser Conference (ISLC). IEEE. (10.23919/ISLC52947.2022.9943389)
Articles
- Albeladi, F. T. et al. 2025. On-chip gain elements for integrated photonics. Optics Express 33 (25), pp.52356-52372. (10.1364/OE.573505)
- Jandu, G. M. et al. 2025. Optical gain in O-band active regions with multiple dot-in-well layers. APL Photonics 10 (10) 106112. (10.1063/5.0275039)
- Mishra, P. et al. 2025. Achieving selectivity and reduced absorption for low loss monolithic InAs QD based III-V photonic integration. Journal of Physics D: Applied Physics 58 (26) 265104. (10.1088/1361-6463/ade450)
- Mishra, P. et al. 2025. High temperature operation of co-doped InAs quantum dot laser for O-band emission. IEEE Photonics Journal 17 (3) 0600606. (10.1109/jphot.2025.3560443)
- Park, J. et al., 2025. High operating temperature (> 200 °C) InAs/GaAs quantum-dot laser with co-doping technique. Journal of Physics D: Applied Physics 58 (18) 185101. (10.1088/1361-6463/adc275)
- Albeladi, F. T. et al. 2023. Design and characterisation of multi-mode interference reflector lasers for integrated photonics. Journal of Physics D: Applied Physics 56 (38) 384001. (10.1088/1361-6463/acdb80)
Conferences
- Mishra, P. et al. 2024. Achieving O-band InAs quantum dot laser operation at 200 °C. Presented at: 2024 IEEE 29th International Semiconductor Laser Conference (ISLC) Orlando, FL, USA 29 September - 02 October 2024. 2024 IEEE 29th International Semiconductor Laser Conference (ISLC). IEEE. , pp.1-2. (10.1109/islc57752.2024.10717409)
- Albeladi, F. T. et al., 2024. InAs quantum dot-based one- and two-port multimode interference reflectors for integrated photonic devices: design, fabrication, and evaluation. Presented at: SPIE OPTO 2024 San Francisco, CA, USA January 2024. Proceedings Novel In-Plane Semiconductor Lasers XXIII. Vol. 12905.SPIE. , pp.40. (10.1117/12.3003224)
- Albeladi, F. T. et al. 2023. Multi-mode interference reflector for integrated photonics. Presented at: 2023 IEEE Photonics Conference (IPC) 12-16 November 2023. Proceedings 2023 IEEE Photonics Conference (IPC). IEEE. (10.1109/IPC57732.2023.10360650)
- Enderson, A. et al. 2023. Monolithic InAs QDs based active-passive integration for photonic integrated circuits. Presented at: 2023 IEEE Photonics Conference (IPC) 12-16 November 2023. Proceedings 2023 IEEE Photonics Conference (IPC). IEEE. (10.1109/IPC57732.2023.10360634)
- Albeladi, F. T. et al., 2023. Realisation of multi-mode reflector lasers for integrated photonics. Presented at: Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC) 26-30 June 2023. 2023 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC). IEEE. (10.1109/CLEO/Europe-EQEC57999.2023.10231858)
- Albeladi, F. T. et al. 2022. Multi-mode interference reflector based InAs-QD laser. Presented at: 28th International Semiconductor Laser Conference (ISLC) Matsue, Japan 16-19 October 2022. Proceedings of 28th International Semiconductor Laser Conference (ISLC). IEEE. (10.23919/ISLC52947.2022.9943389)