Search results for "Disk laser"

showing 3 items of 3 documents

Compact 20-pass thin-disk amplifier insensitive to thermal lensing

2019

We present a multi-pass amplifier which passively compensates for distortions of the spherical phase front occurring in the active medium. The design is based on the Fourier transform propagation which makes the output beam parameters insensitive to variation of thermal lens effects in the active medium. The realized system allows for 20 reflections on the active medium and delivers a small signal gain of 30 with M$^2$ = 1.16. Its novel geometry combining Fourier transform propagations with 4f-imaging stages as well as a compact array of adjustable mirrors allows for a layout with a footprint of 400 mm x 1000 mm.

FOS: Physical sciences02 engineering and technology7. Clean energy01 natural scienceslaw.invention010309 opticsFootprint (electronics)symbols.namesake020210 optoelectronics & photonicsOpticslaw0103 physical sciencesThermal0202 electrical engineering electronic engineering information engineeringThin-disk lasers; Multi-pass amplifier; Optical Fourier transform; High power; Relay imaging; Thermal lens; Mirror arrayPhysicsbusiness.industryAmplifierLens (optics)Fourier transformThin disksymbolsThermal lensingbusinessBeam (structure)Optics (physics.optics)Physics - Optics
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750 mW continuous-wave solid-state deep ultraviolet laser source at the 253.7 nm transition in mercury.

2007

A high-power continuous-wave coherent light source at 253.7 nm is described. It is based on a solid-state Yb:YAG disk laser with two successive frequency doubling stages and is capable of generating stable output powers of up to 750 mW. Spectroscopy of the 6 (1)S(0)-6 (3)P(1) transition of mercury has been demonstrated.

Materials sciencebusiness.industrySecond-harmonic generationNonlinear opticsmedicine.disease_causeLaserAtomic and Molecular Physics and OpticsSemiconductor laser theorylaw.inventionOpticslawmedicineContinuous waveOptoelectronicsDisk laserbusinessSpectroscopyUltravioletOptics letters
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Excitation power dependence of the Purcell effect in photonic crystal microcavity lasers with quantum wires

2013

The Purcell effect dependence on the excitation power is studied in photonic crystal microcavity lasers embedding InAs/InP quantum wires. In the case of non-lasing modes, the Purcell effect has low dependence on the optical pumping, attributable to an exciton dynamics combining free and localized excitons. In the case of lasing modes, the influence of the stimulated emission makes ambiguous the determination of the Purcell factor. We have found that this ambiguity can be avoided by measuring the dependence of the decay time on the excitation power. These results provide insights in the determination of the Purcell factor in microcavity lasers. © 2013 AIP Publishing LLC.

PhysicsPhysics and Astronomy (miscellaneous)business.industryDotCondensed Matter::OtherExcitonPhysics::OpticsPurcell effectContinuous-Wave OperationCondensed Matter::Mesoscopic Systems and Quantum Hall EffectSemiconductor laser theoryNanocavityOptical pumpingOptoelectronicsSpontaneous emissionStimulated emissionbusinessSpontaneous EmissionLasing thresholdRoom-TemperatureMicrodisk LasersPhotonic crystal
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