DOE OSTI · 3378020
Tunable Metasurface External-Cavity Quantum Cascade Lasers up to 5.74 THz
Abstract
Vertical-external-cavity surface-emitting lasers based on amplifying quantum-cascade metasurfaces are demonstrated in the 5–6 THz range for the first time. Enhanced parasitic coupling to lossy surface modes requires updated design guidelines, while elevated losses and lower available material gain limit the scaling of the metasurface period from previous designs. A series of metasurface devices with varying periods employing both uniform and focusing metasurfaces is fabricated and characterized. Reducing the metasurface period below 70% of the free-space wavelength enables devices with superior performance, achieving pulsed operation up to 5.74 THz with peak output powers of 1.3 mW, maximum operating temperatures up to 83 K, and continuous-wave operation up to 54 K with 23 μW of output power. In the best case, single-mode tuning from 5.23–5.73 THz, which corresponds to a 9.1% fractional tuning, is realized with near-Gaussian far-field profiles maintained across the entire range. Finally, these results establish quantum cascade vertical-external-cavity surface-emitting lasers as promising candidates for high-frequency local oscillator applications in heterodyne spectroscopy.
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Shahili, Mohammad [Univ. of California, Los Angeles, CA (United States)] (ORCID:0000000271033876), Kim, Anthony D. [Univ. of California, Los Angeles, CA (United States)] (ORCID:0000000321502969), Addamane, Sadhvikas Jayachandra [Sandia National Lab. (SNL-NM), Albuquerque, NM (United States). Center for Integrated Nanotechnologies] (ORCID:0000000252387409), Curwen, Christopher A. [California Institute of Technology (CalTech), Pasadena, CA (United States). Jet Propulsion Lab. (JPL)], Kawamura, Jonathan H. [California Institute of Technology (CalTech), Pasadena, CA (United States). Jet Propulsion Lab. (JPL)], Williams, Benjamin S. [Univ. of California, Los Angeles, CA (United States)]. 2025-10-24. Tunable Metasurface External-Cavity Quantum Cascade Lasers up to 5.74 THz. https://doi.org/10.1021/acsphotonics.5c01765
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