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Broadband chromatic spherical aberration correction in refracting telescopes: a dual correction strategy combining spherical aberration equalization and an aspheric surface
Cong JN(丛迦南); Li ZY(李正阳); Chen JL(陈家砺); Zheng KW(郑凯文)
2025-09
Source PublicationJournal of Astronomical Telescopes, Instruments, and Systems (JATIS)
Volume11Issue:3Pages:034007-1 -22
Abstract

Traditional apochromatic refracting telescopes only achieve spherical aberration  correction at a single wavelength and exhibit significant wavelength-dependent  spherical aberration (spherochromatism), which severely constrains their broad band imaging performance in high-precision astrometric applications and wide-field  surveys. We propose a dual-correction strategy integrating chromatic aberration  equalization and aspheric compensation, achieving diffraction-limited imaging sig nificantly better than the traditional apochromat. Specifically, a 6-in. triplet refractor  designed using this method achieves an on-axis Strehl ratio greater than 99%  across the spectral range from the g-line to the r -line, whereas the 6-in. quadruplet  refractor achieves an on-axis Strehl ratio greater than 99.95% from the ultraviolet  i-line to the near-infrared t -line. Astrometric accuracy simulation shows that this  design enables sub-pixel centroiding (<15 mas) for 16th-magnitude stars. The  designs support the application of wide-field (with short focal length) and multiband  solar observation and can also eliminate manufacturing error accumulation caused  by wavelength mismatch between testing and operational bands in conventional  designs.

Keywordrefracting telescopes apochromat chromatic spherical aberration aspheric surfaces astrometry
Subject Area天文技术与方法
Document Type期刊论文
Identifierhttp://ir.niaot.ac.cn/handle/114a32/2305
Collection中国科学院南京天文光学技术研究所知识成果
期刊论文
Affiliation南京天文光学技术研究所
Recommended Citation
GB/T 7714
Cong JN,Li ZY,Chen JL,et al. Broadband chromatic spherical aberration correction in refracting telescopes: a dual correction strategy combining spherical aberration equalization and an aspheric surface[J]. Journal of Astronomical Telescopes, Instruments, and Systems (JATIS),2025,11(3):034007-1 -22.
APA Cong JN,Li ZY,Chen JL,&Zheng KW.(2025).Broadband chromatic spherical aberration correction in refracting telescopes: a dual correction strategy combining spherical aberration equalization and an aspheric surface.Journal of Astronomical Telescopes, Instruments, and Systems (JATIS),11(3),034007-1 -22.
MLA Cong JN,et al."Broadband chromatic spherical aberration correction in refracting telescopes: a dual correction strategy combining spherical aberration equalization and an aspheric surface".Journal of Astronomical Telescopes, Instruments, and Systems (JATIS) 11.3(2025):034007-1 -22.
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