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논문 기본 정보

자료유형
학술저널
저자정보
Trond S. Trondsen (Keo Scientific Ltd., Calgary, AB T2Z, Canada) John Meriwether (New Jersey Institute of Technology) Craig Unick (Keo Scientific Ltd., Calgary, Canada) Andrew Gerrard (New Jersey Institute of Technology) Matthew Cooper (New Jersey Institute of Technology) Devin Wyatt (Keo Scientific Ltd., Calgary, Canada)
저널정보
한국우주과학회 Journal of Astronomy and Space Sciences Journal of Astronomy and Space Sciences Vol.41 No.2
발행연도
2024.6
수록면
121 - 138 (18page)

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Advances in solar-terrestrial physics are generally linked to the development of innovative new sensor technologies, affording us ever better sensitivity, higher resolution, and broader spectral response. Recent advances in low-noise InGaAs sensor technology have enabled the realization of low-light-level scientific imaging within the short-wave infrared (SWIR) region of the electromagnetic spectrum. This paper describes a new and highly sensitive ultra-wide angle imager that offers an expansion of auroral and airglow imaging capabilities into the SWIR spectral range of 900–1,700 nm. The imager has already proven successful in large-area remote sensing of mesospheric temperatures and in providing intensity maps showing the propagation and dissipation of atmospheric gravity waves and ripples. The addition of an automated filter wheel expands the range of applications of an already versatile SWIR detector. Several potential applications are proposed herein, with an emphasis on auroral science. The combined data from this type of instrument and other existing instrumentation holds a strong potential to further enhance our understanding of the geospace environment.

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