An evaluation of source-blending impact on the calibration of SKA EoR experiments

Fuente: arXiv
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Main Authors: Shan, Chenxi, Xu, Haiguang, Zhu, Yongkai, Zhao, Yuanyuan, White, Sarah V., Line, Jack L. B., Zheng, Dongchao, Zhu, Zhenghao, Hu, Dan, Zhang, Zhongli, Wu, Xiangping
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Published: 2024
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author Shan, Chenxi
Xu, Haiguang
Zhu, Yongkai
Zhao, Yuanyuan
White, Sarah V.
Line, Jack L. B.
Zheng, Dongchao
Zhu, Zhenghao
Hu, Dan
Zhang, Zhongli
Wu, Xiangping
author_facet Shan, Chenxi
Xu, Haiguang
Zhu, Yongkai
Zhao, Yuanyuan
White, Sarah V.
Line, Jack L. B.
Zheng, Dongchao
Zhu, Zhenghao
Hu, Dan
Zhang, Zhongli
Wu, Xiangping
contents Twenty-one-centimetre signals from the Epoch of Reionization (EoR) are expected to be detected in the low-frequency radio window by the next-generation interferometers, particularly the Square Kilometre Array (SKA). However, precision data analysis pipelines are required to minimize the systematics within an infinitesimal error budget. Consequently, there is a growing need to characterize the sources of errors in EoR analysis. In this study, we identify one such error origin, namely source blending, which is introduced by the overlap of objects in the densely populated observing sky under SKA1-Low's unprecedented sensitivity and resolution, and evaluate its two-fold impact in both the spatial and frequency domains using a novel hybrid evaluation (HEVAL) pipeline combining end-to-end simulation with an analytic method to mimic EoR analysis pipelines. Sky models corrupted by source blending induce small but severe frequency-dependent calibration errors when coupled with astronomical foregrounds, impeding EoR parameter inference with strong additive residuals in the two-dimensional power spectrum space. We report that additive residuals from poor calibration against sky models with blending ratios of 5 and 0.5 per cent significantly contaminate the EoR window. In contrast, the sky model with a 0.05 per cent blending ratio leaves little residual imprint within the EoR window, therefore identifying a blending tolerance at approximately 0.05 per cent. Given that the SKA observing sky is estimated to suffer from an extended level of blending, strategies involving de-blending, frequency-dependent error mitigation, or a combination of both, are required to effectively attenuate the calibration impact of source-blending defects.
format Preprint
id arxiv_https___arxiv_org_abs_2409_11691
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An evaluation of source-blending impact on the calibration of SKA EoR experiments
Shan, Chenxi
Xu, Haiguang
Zhu, Yongkai
Zhao, Yuanyuan
White, Sarah V.
Line, Jack L. B.
Zheng, Dongchao
Zhu, Zhenghao
Hu, Dan
Zhang, Zhongli
Wu, Xiangping
Instrumentation and Methods for Astrophysics
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
85-04, 85-08, 85-10
D.2.0; J.2; I.1.2; I.6.5; I.6.6
Twenty-one-centimetre signals from the Epoch of Reionization (EoR) are expected to be detected in the low-frequency radio window by the next-generation interferometers, particularly the Square Kilometre Array (SKA). However, precision data analysis pipelines are required to minimize the systematics within an infinitesimal error budget. Consequently, there is a growing need to characterize the sources of errors in EoR analysis. In this study, we identify one such error origin, namely source blending, which is introduced by the overlap of objects in the densely populated observing sky under SKA1-Low's unprecedented sensitivity and resolution, and evaluate its two-fold impact in both the spatial and frequency domains using a novel hybrid evaluation (HEVAL) pipeline combining end-to-end simulation with an analytic method to mimic EoR analysis pipelines. Sky models corrupted by source blending induce small but severe frequency-dependent calibration errors when coupled with astronomical foregrounds, impeding EoR parameter inference with strong additive residuals in the two-dimensional power spectrum space. We report that additive residuals from poor calibration against sky models with blending ratios of 5 and 0.5 per cent significantly contaminate the EoR window. In contrast, the sky model with a 0.05 per cent blending ratio leaves little residual imprint within the EoR window, therefore identifying a blending tolerance at approximately 0.05 per cent. Given that the SKA observing sky is estimated to suffer from an extended level of blending, strategies involving de-blending, frequency-dependent error mitigation, or a combination of both, are required to effectively attenuate the calibration impact of source-blending defects.
title An evaluation of source-blending impact on the calibration of SKA EoR experiments
topic Instrumentation and Methods for Astrophysics
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
85-04, 85-08, 85-10
D.2.0; J.2; I.1.2; I.6.5; I.6.6
url https://arxiv.org/abs/2409.11691