Impact of Low-Earth Orbit Satellites on the China Space Station Telescope Observations

Fuente: arXiv
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Main Authors: Tang, Huai-Jin, Meng, Xiao-Lei, Zhan, Hu, Meng, Xian-Min, Xu, You-Hua
Format: Preprint
Published: 2025
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author Tang, Huai-Jin
Meng, Xiao-Lei
Zhan, Hu
Meng, Xian-Min
Xu, You-Hua
author_facet Tang, Huai-Jin
Meng, Xiao-Lei
Zhan, Hu
Meng, Xian-Min
Xu, You-Hua
contents It is projected that more than 100,000 communication satellites will be deployed in Low-Earth Orbit (LEO) over the next decade. These LEO satellites (LEOsats) will be captured frequently by the survey camera onboard the China Space Station Telescope (CSST), contaminating sources in the images. As such, it is necessary to assess the impact of LEOsats on CSST survey observations. We use the images taken by the Hubble Space Telescope (HST) in its F814W band to simulate $i$-band images for the CSST. The simulation results indicate that LEOsats at higher altitudes cause more contamination than those at lower altitudes. If 100,000 LEOsats are deployed at altitudes between 550 km and 1200 km with a 53-degree orbital inclination, the fraction of contaminated sources in a 150-s exposure image would remain below 0.50%. For slitless spectroscopic images, the contaminated area is expected to be below 1.50%. After removing the LEOsat trails, the residual photon noise contributes to relative photometric errors that exceed one-tenth of the total error budget in approximately 0.10% of all sources. Our investigation shows that even though LEOsats are unavoidable in CSST observations, they only have a minor impact on samples extracted from the CSST survey.
format Preprint
id arxiv_https___arxiv_org_abs_2507_14994
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Impact of Low-Earth Orbit Satellites on the China Space Station Telescope Observations
Tang, Huai-Jin
Meng, Xiao-Lei
Zhan, Hu
Meng, Xian-Min
Xu, You-Hua
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
It is projected that more than 100,000 communication satellites will be deployed in Low-Earth Orbit (LEO) over the next decade. These LEO satellites (LEOsats) will be captured frequently by the survey camera onboard the China Space Station Telescope (CSST), contaminating sources in the images. As such, it is necessary to assess the impact of LEOsats on CSST survey observations. We use the images taken by the Hubble Space Telescope (HST) in its F814W band to simulate $i$-band images for the CSST. The simulation results indicate that LEOsats at higher altitudes cause more contamination than those at lower altitudes. If 100,000 LEOsats are deployed at altitudes between 550 km and 1200 km with a 53-degree orbital inclination, the fraction of contaminated sources in a 150-s exposure image would remain below 0.50%. For slitless spectroscopic images, the contaminated area is expected to be below 1.50%. After removing the LEOsat trails, the residual photon noise contributes to relative photometric errors that exceed one-tenth of the total error budget in approximately 0.10% of all sources. Our investigation shows that even though LEOsats are unavoidable in CSST observations, they only have a minor impact on samples extracted from the CSST survey.
title Impact of Low-Earth Orbit Satellites on the China Space Station Telescope Observations
topic Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2507.14994