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Journal of Research of the National Institute of Standards and Technology|August 9, 2016
Sources of Error in UV Radiation MeasurementsT C Larason, C L CromerJournal of Research of the National Institute of Standards and Technology|January 1, 1996
The NIST High Accuracy Scale for Absolute Spectral Response from 406 nm to 920 nmT C Larason, S S Bruce, C L CromerApplied Optics|September 11, 2010
National Institute of Standards and Technology detector-based photometric scaleC L Cromer, G Eppeldauer, J E Hardis, et al.Journal of Research of the National Institute of Standards and Technology|January 1, 1996
The NIST Detector-Based Luminous Intensity ScaleC L Cromer, G Eppeldauer, J E Hardis, et al.Journal of Research of the National Institute of Standards and Technology|August 24, 2016
Improved Near-Infrared Spectral Responsivity ScaleP S Shaw, T C Larason, R Gupta, et al.Optics Letters|August 28, 2009
Spectroscopic decay-rate measurements below the laser linewidthW E Cooke, S A Bhatti, C L CromerApplied Optics|November 25, 2010
Realization of a scale of absolute spectral response using the National Institute of Standards and Technology high-accuracy cryogenic radiometerT R Gentile, J M Houston, C L CromerApplied Optics|June 1, 1997
Calibration of a pyroelectric detector at 10.6 microm with the National Institute of Standards and Technology high-accuracy cryogenic radiometerT R Gentile, J M Houston, G Eppeldauer, et al.The Review of Scientific Instruments|October 2, 2020
Optical and mechanical design of a telescope for lunar spectral irradiance measurements from a high-altitude aircraftC J Zarobila, S Grantham, S W Brown, et al.Applied Optics|November 19, 2010
National Institute of Standards and Technology high-accuracy cryogenic radiometerT R Gentile, J M Houston, J E Hardis, et al.Pageof 2