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Surface-emitting ring quantum cascade lasers

Szedlak Rolf et al · Wiley · 2025

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This review highlights the development and diverse applications of surface-emitting ring quantum cascade lasers. These lasers, featuring a ring-shaped cavity and a second-order distributed feedback grating, enable controlled surface emission, stable single-mode operation, and collimated, circularly symmetric beams. These advancements have expanded their use in scientific and industrial applications, with significant progress in extending their operation from the mid-infrared to the terahertz regime. Innovations such as microring designs, phase-shifted gratings and buried heterostructures have enhanced their scalability, beam quality, and suitability for continuous-wave operation at room temperature, unlocking opportunities in spectroscopy, imaging, and communication. On-chip optical solutions and integrated architectures combining emission and detection within a single chip further pave the way for compact and efficient systems for remote sensing and gas monitoring. Progress in miniaturization, thermal stability, and wavelength consistency strengthens the role of ring-based lasers in industrial, environmental, and medical diagnostics. These advancements, alongside scalable fabrication techniques and enhanced modulation schemes, position ring quantum cascade lasers as key enablers for the next generation of robust, energy-efficient sensors tailored to diverse scientific and industrial needs.

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APA 7

al, S. R. E. (2025). Surface-emitting ring quantum cascade lasers. https://doi.org/10.1515/nanoph-2025-0248

MLA

al, Szedlak Rolf et. "Surface-emitting ring quantum cascade lasers." 2025. https://doi.org/10.1515/nanoph-2025-0248.

Chicago

al, Szedlak Rolf et. 2025. "Surface-emitting ring quantum cascade lasers.". https://doi.org/10.1515/nanoph-2025-0248.

Harvard

al, S. R. E. 2025, Surface-emitting ring quantum cascade lasers, Wiley, available at: https://doi.org/10.1515/nanoph-2025-0248 [Accessed 8 Aug. 2026].

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Title
Surface-emitting ring quantum cascade lasers
Author / contributors
Szedlak Rolf et al
Publisher
Wiley
Publication year
2025
ISSN
2192-8614
ISSN
2192-8614
Language
English

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