Directly Modulated Quantum Cascade Laser and Its Application in Free-Space Communications
Proceedings of SPIE. Vol.11894: Optoelectronic Devices and Integration X 2021
Xiaodan Pang, Richard Schatz, Mahdieh Joharifar, Aleksejs Udaļcovs, Vjačeslavs Bobrovs, Lu Zhang, Xianbin Yu, Yan-Ying Sun, Sergei Popov, Sebastian Lourdudoss, Oskars Ozoliņš

In this report, we summarize our recent achievements in free-space communications in the mid-infrared (MIR) region enabled by directly modulated quantum cascaded laser (QCL) at 4.65 µm (~65 THz). We have experimentally demonstrated a multigigabit free-space transmission link in the lab environment with the QCL operating at room temperature. The QCL chip is mounted on a commercial QCL mount with a water-cooled Peltier element. Multilevel modulation formats at different baud rates are generated and combined with the laser driving current at a custom-made bias-tee to drive and modulate the QCL. A commercial mercury cadmium telluride (MCT, HgCdTe) photovoltaic (PV) MIR detector with a built-in trans-impedance amplifier was used to receive the MIR free-space signal. With the receiver to be the bottleneck of the system bandwidth, the end-to-end 3-dB bandwidth was measured to be around 320 MHz, and the 6-dB bandwidth was around 450 MHz. We have successfully demonstrated up to 6 Gbps free space transmission with multilevel modulation formats, assisted with effective digital equalization techniques despite the limited bandwidth.


Atslēgas vārdi
MIR, QCL, DSP
DOI
10.1117/12.2602236
Hipersaite
https://www.spiedigitallibrary.org/conference-proceedings-of-spie/11894/2602236/Directly-modulated-quantum-cascade-laser-and-its-application-in-free/10.1117/12.2602236.short?SSO=1

Pang, X., Schatz, R., Joharifar, M., Udaļcovs, A., Bobrovs, V., Zhang, L., Yu, X., Sun, Y., Popov, S., Lourdudoss, S., Ozoliņš, O. Directly Modulated Quantum Cascade Laser and Its Application in Free-Space Communications. No: Proceedings of SPIE. Vol.11894: Optoelectronic Devices and Integration X, Ķīna, Nantong, 10.-19. oktobris, 2021. Bellingham: SPIE, 2021, Article number 118940A. ISSN 0277-786X. e-ISSN 1996-756X. Pieejams: doi:10.1117/12.2602236

Publikācijas valoda
English (en)
RTU Zinātniskā bibliotēka.
E-pasts: uzzinas@rtu.lv; Tālr: +371 28399196