MITIGATION OF STRAY LIGHT IN CATADIOPTRIC OPTICAL SYSTEMS

Authors

Name Affiliation
Berik Zhumazhanov

«Ghalam» LLP

Aigul Kulakayeva

International Information University

Ainur Zhetpisbayeva

 L.N. Gumilyov Eurasian National University

Beksultan Zhumazhanov

«Ghalam» LLP

Pages:

114-129

Views:

19

Keywords:

BDLI, Maksutov design, stray radiation, Earth remote sensing, baffle, Zemax OpticStudio, catadioptric optical system

Abstract

This article presents the results of a study on the modeling, calculation, and mitigation of stray radiation in catadioptric optical systems used in satellite-based Earth remote sensing applications. The object of investigation is a compact optical system, BDLI, based on the Maksutov optical design. The objective of the study is to evaluate the effectiveness of design solutions aimed at reducing stray radiation and to assess their feasibility under the strict volume and mass constraints of spacecraft. To analyze the propagation of scattered light, a reverse ray tracing method was employed using the Zemax OpticStudio software. This enabled the identification of primary stray light paths and the development of effective suppression measures. Various geometric configurations of baffles were examined, along with the influence of light-absorbing and dielectric coatings. Simulation results demonstrated that stray radiation can be reduced to 1.9% at the edge of the field of view and to 0.15% along the optical axis. A comparison with a more complex optical system confirmed the substantial impact of spatial component arrangement on shielding efficiency. The obtained findings may be applied in the development of compact, high-precision optical instruments for satellite-based Earth observation systems.

References

  1. Zhu, Y., Wu, G., Yang, Z., & Wang, Z. (2015). Internal and external stray radiation suppression for LWIR catadioptric telescope using non-sequential ray tracing. Infrared Physics & Technology, 70, 1–6. https://doi.org/10.1016/j.infrared.2015.01.003
  2. Hong, D. K., Lee, S. H., Park, H. J., & Nam, S. H. (2025). Enhancing the efficiency of stray-light analysis using corner-departure backward ray-tracing. Current Optics and Photonics, 9(1), 35–41. https://doi.org/10.5207/COPP.2025.9.1.035
  3. Yeon, H. N., Kim, S. K., & Park, J. H. (2025). Optimized baffle design for suppression of internal and external stray light in LWIR catadioptric payload. Current Optics and Photonics, 9(1), 65–71. https://doi.org/10.5207/COPP.2025.9.1.065
  4. Lu, Y., Xu, X., Zhang, N., Lv, Y., & Xu, L. (2024). Study on stray light testing and suppression techniques for large-field of view multispectral space optical systems. IEEE Access, 12, 33938-33948.
  5. Fu, Q., Yan, L., Tan, S., Liu, Y., & Wang, L. (2024). Lightweight and high-stiffness metal optical systems based on additive manufacturing. Micromachines, 15(1).
  6. Zou, Y., Zhang, L., Zhang, J., & Cui, J. (2022). Synchronous measurement method of a multi-angle scattered light field. Applied optics, 61(9), 2275-2283.
  7. Zeng, X., Lan, J., & Gao, X. (2020). The design of a catadioptric omnidirectional thermal imaging system based on the combination of genetic algorithm and gradient descent. Optics & Laser Technology, 122, 105861.
  8. Li, T., Lai, X., Liao, S., Zhao, X., Xia, Y., & Zhou, J. (2025). A REBPNet-based IR radiometric calibration method considering ambient temperature change. Infrared Physics & Technology, 145, 105715.
  9. Han, P., Guo, J., Bao, Q., Qin, T., Ren, G., & Liu, Y. (2021). Optical design and stray light control for a space-based laser space debris removal mission. Applied optics, 60(25), 7721-7730.
  10. Chunlei, S., & Xiaoping, L. (2019). Stray light analysis of catadioptric long-wavelength infrared optical system. Procedia Computer Science, 147, 203-209.
  11. Xing, Y., Peng, J., Wang, S., & Li, L. (2019, December). A passive optical athermalization design of MWIR catadioptric space remote sensor with high resolution in geosynchronous orbit. In AOPC 2019: Space Optics, Telescopes, and Instrumentation (Vol. 11341, pp. 494-499). SPIE.
Zhumazhanov, B., Kulakayeva, А., Zhetpisbayeva, А., & Zhumazhanov, B. (2026). MITIGATION OF STRAY LIGHT IN CATADIOPTRIC OPTICAL SYSTEMS. EKTU Journal of Engineering Sciences, 1(1), 114-129. https://doi.org/10.51885/3134-8009_JES_2026_1_10