Jaidl, M., Beiser, M., Giparakis, M., Kainz, M. A., Theiner, D., Limbacher, B., Ertl, M. C., Andrews, A. M., Strasser, G., Darmo, J., & Unterrainer, K. (2023). Ultrabroadband Heterogeneous THz Quantum Cascade Laser. ACS Photonics, 10(1), 111–115. https://doi.org/10.1021/acsphotonics.2c01202
Broadband emission in the terahertz spectral region is a prerequisite for applications such as spectroscopy or white light sources. Appropriate signal powers and a compact design are advantageous for this use. A technology which meets these requirements are terahertz quantum cascade lasers. These electrically pumped, on-chip semiconductor lasers provide high output powers and the freedom of tailoring their emission wavelength by bandstructure engineering. By combining multiple active region designs emitting at different wavelengths in a single structure, one can obtain broadband emission from a single device. Here, we present a heterogeneous terahertz quantum cascade laser consisting of five individual active regions based on a three-well, LO-phonon depopulation design. The devices lase in pulsed and continuous-wave operation and emit in a spectral range from 1.9 to 4.5 THz, covering a bandwidth of 1.37 octaves. The use of the three-well design, which was optimized for high temperature operation, leads to a maximum operating temperature in the pulsed operation of 143 K.
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Project title:
Funktionelle Festkörper: W1243-N16 (FWF Fonds zur Förderung der wissenschaftlichen Forschung (FWF)) Directional High Power Terahertz Quantum Cascade Lasers: P30709-N27 (FWF Fonds zur Förderung der wissenschaftlichen Forschung (FWF)) Manufacturing concept for high precision spectral CO/CO2 sensors: 883941 (FFG - Österr. Forschungsförderungs- gesellschaft mbH)