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Microcontroller-based pulse coding of quantum cascade lasers for infrared countermeasures and communication

  • Royal Military Academy

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Résumé

Precise control of Quantum Cascade Laser (QCL) modulation is essential for both directed infrared countermeasure (DIRCM) systems and covert free-space optical communication. We present a compact, microcontrollerdriven modulation unit that enables real-time adjustment of frequency, duty cycle, phase, and waveform in a 4.56 μm QCL. Experiments with a cooled InSb focal plane array (FPA) reveal two distinct dazzling regimes: (i) long integration times dominated by optical saturation of the illuminated spot, and (ii) short integration times where global horizontal bands emerge from rail loading and bias collapse in the Direct Injection (DI) readout circuit. The number of bands scales predictably with modulation-to-frame-rate ratio (N ≈ fm/ff), and their contrast depends on integration time. These controllable ROIC-induced artifacts can be exploited to disrupt imaging seekers or to encode structured communication patterns.

langue originaleAnglais
titreHigh-Power Lasers and Technologies for Optical Countermeasures III
rédacteurs en chefMarc Eichhorn, Gareth D. Lewis
EditeurSociety of Photo-Optical Instrumentation Engineers
ISBN (Electronique)9781510692893
Les DOIs
étatPublié - 29 oct. 2025
Evénement3rd High-Power Lasers and Technologies for Optical Countermeasures - Madrid, Espagne
Durée: 17 sept. 202517 sept. 2025

Série de publications

NomProceedings of SPIE - The International Society for Optical Engineering
Volume13675
ISSN (imprimé)0277-786X
ISSN (Electronique)1996-756X

Une conférence

Une conférence3rd High-Power Lasers and Technologies for Optical Countermeasures
Pays/TerritoireEspagne
La villeMadrid
période17/09/2517/09/25

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