Challan: Solar Full-Disk Imaging-Spectroscopic Telescope Using the Drift-Scanning Technique
The Challan instrument is a solar full-disk imaging spectroscopic telescope planned to be installed at three sites with a 120-degree longitudinal difference, enabling continuous 24-hour observations of the Sun. It will take data every 2.5 min with a spatial resolution of 2–3′′ and a spectral resolvi...
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Published in | Journal of the Korean Astronomical Society, 58(2) Vol. 58; no. 2; pp. 175 - 183 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
한국천문학회
01.12.2025
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Subjects | |
Online Access | Get full text |
ISSN | 1225-4614 2288-890X |
DOI | 10.5303/JKAS.2025.58.2.175 |
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Abstract | The Challan instrument is a solar full-disk imaging spectroscopic telescope planned to be installed at three sites with a 120-degree longitudinal difference, enabling continuous 24-hour observations of the Sun. It will take data every 2.5 min with a spatial resolution of 2–3′′ and a spectral resolving power (R) of >43,000 in Hα and Ca ii 8542 Å bands simultaneously. Challan is composed of two modules, each dedicated to a specific waveband. This modular design is beneficial in minimizing the scattered light and simplifying the structure and engineering. The primary scientific goal of Challan is to investigate solar flares and filament eruptions. It is also expected to detect small-scale events in the solar chromosphere. In 2025, Challan will be installed at the Big Bear Solar Observatory for test observational runs, followed by scientific runs in 2026. |
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AbstractList | The Challan instrument is a solar full-disk imaging spectroscopic telescope planned to be installed at three sites with a 120-degree longitudinal difference, enabling continuous 24-hour observations of the Sun. It will take data every 2.5 min with a spatial resolution of 2–3′′ and a spectral resolving power (R) of >43,000 in Hα and Ca ii 8542 Å bands simultaneously. Challan is composed of two modules, each dedicated to a specific waveband. This modular design is beneficial in minimizing the scattered light and simplifying the structure and engineering. The primary scientific goal of Challan is to investigate solar flares and filament eruptions. It is also expected to detect small-scale events in the solar chromosphere. In 2025, Challan will be installed at the Big Bear Solar Observatory for test observational runs, followed by scientific runs in 2026. The Challan instrument is a solar full-disk imaging spectroscopic telescope planned to be installed at three sites with a 120-degree longitudinal difference, enabling continuous 24-hour observations of the Sun. It will take data every 2.5 min with a spatial resolution of 2--3 arcsec and a spectral resolving power (R) of >43,000 in Hα and Ca II 8542 Å bands simultaneously. Challan is composed of two modules, each dedicated to a specific waveband. This modular design is beneficial in minimizing the scattered light and simplifying the structure and engineering. The primary scientific goal of Challan is to investigate solar flares and filament eruptions. It is also expected to detect small-scale events in the solar chromosphere. In 2025, Challan will be installed at the Big Bear Solar Observatory for test observational runs, followed by scientific runs in 2026. KCI Citation Count: 0 |
Author | Eun-Kyung Lim Seonghwan Choi Sujin Kim Yeon-Han Kim Su-Chan Bong Heesu Yang Donguk Song Maria S. Madjarska Hannah Kwak Sung-Hong Park |
Author_xml | – sequence: 2 fullname: Heesu Yang – sequence: 3 fullname: Maria S. Madjarska – sequence: 4 fullname: Donguk Song – sequence: 5 fullname: Hannah Kwak – sequence: 6 fullname: Sung-Hong Park – sequence: 7 fullname: Eun-Kyung Lim – sequence: 8 fullname: Sujin Kim – sequence: 9 fullname: Su-Chan Bong – sequence: 10 fullname: Yeon-Han Kim – sequence: 11 fullname: Seonghwan Choi |
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Keywords | instrumentation: spectrographs— Sun: chromosphere— techniques: imaging spectroscopy |
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TableOfContents | Introduction Scientific Objectives and System Requirements Concepts of Design Technique and Specification Modular Design Optical Design and Mechanisms Optical Alignment Control Software & Automation Data Acquisition and Processing Summary and Conclusion Acknowledgments References |
Title | Challan: Solar Full-Disk Imaging-Spectroscopic Telescope Using the Drift-Scanning Technique |
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