Publication | Closed Access
Solar blind chemically vapor deposited diamond detectors for vacuum ultraviolet pulsed light-source characterization
64
Citations
20
References
1998
Year
Ultraviolet LightShort Wavelength OpticEngineeringLaser ScienceSolar BlindLaser ApplicationsVacuum DeviceHigh-power LasersRadiation GenerationOptical PropertiesOptical DiagnosticsVacuum UltravioletPulse DurationResponse TimesSynthetic DiamondPhotonicsRadiation DetectionPhysicsPhotoelectric MeasurementUv-vis SpectroscopyDiamond-like CarbonNatural SciencesSpectroscopyApplied PhysicsDiamond DetectorsOptoelectronics
A major difficulty in characterizing vacuum ultraviolet (VUV) radiation produced by harmonic generation or four-wave sum frequency mixing arises in differentiating between the desired VUV signal and the remaining fundamental pump laser beam. To overcome this problem, visible and near UV blind VUV detectors, made from natural and synthetic diamond, have been developed. Such detectors have been used to characterize coherent VUV pulses (λ=125 nm, pulse duration at full width half maximum (FWHM) τFWHM∼7 ns) generated by resonance-enhanced four-wave sum mixing in mercury vapor. They allow full characterization of the intensity profile of the VUV pulses, without any significant parasitic signal from simultaneous stray light irradiation at λ=313 nm. Detectors were fabricated exhibiting response times of less than 70 ps at FWHM, corresponding to the lowest response time obtainable with a 7 GHz bandwidth single-shot oscilloscope.
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