The effects of optical feedback (OF) in lasers have been observed since the early days of laser development. While OF can result in undesirable and unpredictable operation in laser systems, it can also cause measurable perturbations to the operating parameters, which can be harnessed for metrological purposes. In this work we exploit this ‘self-mixing’ effect to infer the emission spectrum of a semiconductor laser using a laser-feedback interferometer, in which the terminal voltage of the laser is used to coherently sample the reinjected field. We demonstrate this approach using a terahertz frequency quantum cascade laser operating in both single- and multiple-longitudinal mode regimes, and are able to resolve spectral features not reliably...
This tutorial presents a guided tour of laser feedback interferometry, from its origin and early dev...
Optical feedback effects in lasers may be useful or problematic, depending on the type of applicatio...
International audienceWe demonstrate a nanometric sensor based on feedback interferometry in a DFB l...
Abstract The effects of optical feedback (OF) in lasers have been observed since the early days of l...
The use of a single terahertz (THz) quantum cascade laser (QCL) device as both emitter and detector ...
We report on the high detection sensitivity of a laser feedback interferometry scheme based on a ter...
The terahertz (THz) frequency quantum cascade laser (QCL) is a compact source of high-power radiatio...
The typical modal characteristics arising during laser feedback interferometry (LFI) in multi-mode t...
We propose a laser feedback interferometer operating at multiple terahertz (THz) frequency bands by ...
Considerable interest exists for sensing and imaging technologies in the terahertz (THz) spectral ra...
Applications of semiconductor lasers with optical feedback systems are driving rapid developments in...
Quantum cascade lasers (QCLs) are high-power sources of coherent radiation in the midinfrared and te...
Remarkable progress in terahertz (THz) technology over the past decade has been driven by the potent...
Feedback parameter (the C factor) is an important parameter for a semiconductor laser operating in t...
Quantum cascade lasers (QCLs) are high-power sources of coherent radiation in the midinfrared and te...
This tutorial presents a guided tour of laser feedback interferometry, from its origin and early dev...
Optical feedback effects in lasers may be useful or problematic, depending on the type of applicatio...
International audienceWe demonstrate a nanometric sensor based on feedback interferometry in a DFB l...
Abstract The effects of optical feedback (OF) in lasers have been observed since the early days of l...
The use of a single terahertz (THz) quantum cascade laser (QCL) device as both emitter and detector ...
We report on the high detection sensitivity of a laser feedback interferometry scheme based on a ter...
The terahertz (THz) frequency quantum cascade laser (QCL) is a compact source of high-power radiatio...
The typical modal characteristics arising during laser feedback interferometry (LFI) in multi-mode t...
We propose a laser feedback interferometer operating at multiple terahertz (THz) frequency bands by ...
Considerable interest exists for sensing and imaging technologies in the terahertz (THz) spectral ra...
Applications of semiconductor lasers with optical feedback systems are driving rapid developments in...
Quantum cascade lasers (QCLs) are high-power sources of coherent radiation in the midinfrared and te...
Remarkable progress in terahertz (THz) technology over the past decade has been driven by the potent...
Feedback parameter (the C factor) is an important parameter for a semiconductor laser operating in t...
Quantum cascade lasers (QCLs) are high-power sources of coherent radiation in the midinfrared and te...
This tutorial presents a guided tour of laser feedback interferometry, from its origin and early dev...
Optical feedback effects in lasers may be useful or problematic, depending on the type of applicatio...
International audienceWe demonstrate a nanometric sensor based on feedback interferometry in a DFB l...