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The TSIS-1 Hybrid Solar Reference Spectrum

  • O. M. Coddington
  • , E. C. Richard
  • , D. Harber
  • , P. Pilewskie
  • , T. N. Woods
  • , K. Chance
  • , X. Liu
  • , K. Sun
  • University of Colorado Boulder
  • Harvard-Smithsonian Center for Astrophysics

Research output: Contribution to journalArticlepeer-review

115 Scopus citations

Abstract

We present a new solar irradiance reference spectrum representative of solar minimum conditions between solar cycles 24 and 25. The Total and Spectral Solar Irradiance Sensor-1 (TSIS-1) Hybrid Solar Reference Spectrum (HSRS) is developed by applying a modified spectral ratio method to normalize very high spectral resolution solar line data to the absolute irradiance scale of the TSIS-1 Spectral Irradiance Monitor (SIM) and the CubeSat Compact SIM (CSIM). The high spectral resolution solar line data are the Air Force Geophysical Laboratory ultraviolet solar irradiance balloon observations, the ground-based Quality Assurance of Spectral Ultraviolet Measurements In Europe Fourier transform spectrometer solar irradiance observations, the Kitt Peak National Observatory solar transmittance atlas, and the semi-empirical Solar Pseudo-Transmittance Spectrum atlas. The TSIS-1 HSRS spans 202–2730 nm at 0.01 to ∼0.001 nm spectral resolution with uncertainties of 0.3% between 460 and 2365 nm and 1.3% at wavelengths outside that range.

Original languageEnglish
Article numbere2020GL091709
JournalGeophysical Research Letters
Volume48
Issue number12
DOIs
StatePublished - Jun 28 2021

Keywords

  • High accuracy
  • high resolution
  • new reference spectrum
  • solar irradiance

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