2007
DOI: 10.1016/j.crhy.2007.09.010
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Infrared (2–12 μm) solid-state laser sources: a review

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Cited by 396 publications
(160 citation statements)
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“…For them phase matching can be achieved, which enables their use in continuously tunable laser sources over wide infrared spectral ranges. [29][30][31][32] Detailed spectroscopic SHG studies of semiconductors at low temperatures, with high spectral resolution, and in applied magnetic field were initiated only in recent years. It was discovered that the application of a magnetic field to the noncentrosymmetric diamagnetic semiconductors GaAs and CdTe, for which SHG is allowed in ED approximation, induces new optical nonlinearities.…”
mentioning
confidence: 99%
“…For them phase matching can be achieved, which enables their use in continuously tunable laser sources over wide infrared spectral ranges. [29][30][31][32] Detailed spectroscopic SHG studies of semiconductors at low temperatures, with high spectral resolution, and in applied magnetic field were initiated only in recent years. It was discovered that the application of a magnetic field to the noncentrosymmetric diamagnetic semiconductors GaAs and CdTe, for which SHG is allowed in ED approximation, induces new optical nonlinearities.…”
mentioning
confidence: 99%
“…The near-and mid-infrared range covering the spectral band of 1-12 lm has been the one of the most explored research regions in laser technology in recent years [1]. The interest in this area results from the fact that the environment monitoring and national security engineering utilize radiation of this particular wavelength rangemainly due to an occurrence of spectral lines-characteristic for many chemical and biological compounds.…”
Section: Introductionmentioning
confidence: 99%
“…Research on mid infrared laser sources destined for long range detection is one of the most active areas of solid state photonics nowadays (see e.g. (Godard, 2007) (Mirov et al, 2007) etc.) (Schellhorn, et al, 2007) ).…”
Section: Introductionmentioning
confidence: 99%