Presentation + Paper
5 March 2022 Extremely fast tunable interband cascade laser with external cavity for the MIR region
Author Affiliations +
Proceedings Volume 12008, Photonic Instrumentation Engineering IX; 1200801 (2022) https://doi.org/10.1117/12.2609462
Event: SPIE OPTO, 2022, San Francisco, California, United States
Abstract
External resonator diode lasers are the appropriate choice for species detection in application areas such as medicine, climate and industry due to their excellent properties, but have limitations in terms of high detection rates and commercial availability in the MIR region. Especially in the MIR region, many molecules have particularly strong absorption bands, which can result in very low detection limits and is therefore of particular interest. In this paper, we present our new ICbased laser chips with straight and curved waveguides with a center wavelength at 3.4 μm. These are integrated into an external resonator setup and characterized. The IC-based system enables continuous wave operation at room temperature over a wavelength range of 285 nm with several mW output power. With respect to the problem of high sampling rates, one promising technique is MEMS technology integrated as a tuning element in the external resonator structure. This enables planar drive control for high-frequency resonance-driven MEMS scanners, where the sampling frequency corresponds to the resonance frequency. These will be tested for their suitability and integrated into an ECDL setup and evaluated. Our work will address new requirements in terms of tuning range, output power, and acquisition rate.
Conference Presentation
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Morten Hoppe, Christian Aßmann, Sebastian Schmidtmann, Martin Honsberg, Herve Tatenguem, Thomas Schanze, Joachim Sacher, and ShanShan Gu-Stoppel "Extremely fast tunable interband cascade laser with external cavity for the MIR region", Proc. SPIE 12008, Photonic Instrumentation Engineering IX, 1200801 (5 March 2022); https://doi.org/10.1117/12.2609462
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KEYWORDS
Microelectromechanical systems

Scanners

Resonators

Quantum cascade lasers

Semiconductor lasers

Waveguides

Absorption

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