_version_ 1866910091043667968
author Dash, Adarsh Kumar
Anstey, Dominic
Bevins, Harry T. J.
Acedo, Eloy de Lera
Allen, Gary
Artuc, Kaan
Bernardi, Gianni
Bucher, Martin
Carey, Steve
Cavillot, Jean
Chiello, Ricardo
Chu, Adelicia S.
Croukamp, Wessel
Cumner, John
Dasgupta, Saswata
de Villiers, Dirk I. L.
Dhandha, Jiten
Dragovic, Aleksandra
Ely, John A.
Fialkov, Anastasia
Gessey-Jones, Thomas
Handley, Will J.
Kirkham, Christian
Kulkarni, Girish
Leeney, Samuel A. K.
Magro, Alessio
Meerburg, P. Daan
Mittal, Shikhar
Molnar, Daniel
Patel, Rohan S.
Pattison, Joe H. N.
Pegwal, Saurabh
Pieterse, Carla M.
Pritchard, Jonathan R.
Rajpoot, Gabriella
Razavi-Ghods, Nima
Robins, Daniel
Roque, Ian L. V.
Saxena, Anchal
Scheutwinkel, Killian H.
Shen, Emma
Sims, Peter H.
Spinelli, Marta
Zhu, Jiacong
author_facet Dash, Adarsh Kumar
Anstey, Dominic
Bevins, Harry T. J.
Acedo, Eloy de Lera
Allen, Gary
Artuc, Kaan
Bernardi, Gianni
Bucher, Martin
Carey, Steve
Cavillot, Jean
Chiello, Ricardo
Chu, Adelicia S.
Croukamp, Wessel
Cumner, John
Dasgupta, Saswata
de Villiers, Dirk I. L.
Dhandha, Jiten
Dragovic, Aleksandra
Ely, John A.
Fialkov, Anastasia
Gessey-Jones, Thomas
Handley, Will J.
Kirkham, Christian
Kulkarni, Girish
Leeney, Samuel A. K.
Magro, Alessio
Meerburg, P. Daan
Mittal, Shikhar
Molnar, Daniel
Patel, Rohan S.
Pattison, Joe H. N.
Pegwal, Saurabh
Pieterse, Carla M.
Pritchard, Jonathan R.
Rajpoot, Gabriella
Razavi-Ghods, Nima
Robins, Daniel
Roque, Ian L. V.
Saxena, Anchal
Scheutwinkel, Killian H.
Shen, Emma
Sims, Peter H.
Spinelli, Marta
Zhu, Jiacong
contents The spin-flip 21-cm signal from the Cosmic Dawn and the Epoch of Reionization is an essential probe of the conditions that led to the formation of the first luminous objects in the early Universe. However, its detection remains a major challenge owing to its low strength compared to the bright foregrounds and the requirement of precise calibration of the instrument to prevent systematics that could hinder a detection or lead to false inferences. REACH (Radio Experiment for the Analysis of Cosmic Hydrogen) is a radiometer experiment designed to detect this sky-averaged signal in the frequency range of 50--130~MHz. Using a wide-beam antenna, REACH calibration relies on internal reference sources, covering a broad range of temperatures and reflection coefficients. The choice of type and number of calibrators used significantly influences the quality of the calibration. This work investigates these effects and introduces a novel method for selecting an optimal set of calibration sources. With an optimised set, we aim to reduce calibration time, thereby increasing sky integration time while preserving calibration accuracy. We explore two optimisation strategies: one applied across the full receiver band and another performed on a frequency-by-frequency basis. Finally, we demonstrate that, with a total calibration time comparable to the conventional full-calibrator set, an optimised set with fewer calibrators achieves approximately a $15~\%$ reduction in calibrated temperature noise and improved absolute calibration of the instrument. This has implications for better calibration strategies in similar radiometer experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2604_00105
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Optimisation of calibration sources for global 21-cm experiments: the REACH case
Dash, Adarsh Kumar
Anstey, Dominic
Bevins, Harry T. J.
Acedo, Eloy de Lera
Allen, Gary
Artuc, Kaan
Bernardi, Gianni
Bucher, Martin
Carey, Steve
Cavillot, Jean
Chiello, Ricardo
Chu, Adelicia S.
Croukamp, Wessel
Cumner, John
Dasgupta, Saswata
de Villiers, Dirk I. L.
Dhandha, Jiten
Dragovic, Aleksandra
Ely, John A.
Fialkov, Anastasia
Gessey-Jones, Thomas
Handley, Will J.
Kirkham, Christian
Kulkarni, Girish
Leeney, Samuel A. K.
Magro, Alessio
Meerburg, P. Daan
Mittal, Shikhar
Molnar, Daniel
Patel, Rohan S.
Pattison, Joe H. N.
Pegwal, Saurabh
Pieterse, Carla M.
Pritchard, Jonathan R.
Rajpoot, Gabriella
Razavi-Ghods, Nima
Robins, Daniel
Roque, Ian L. V.
Saxena, Anchal
Scheutwinkel, Killian H.
Shen, Emma
Sims, Peter H.
Spinelli, Marta
Zhu, Jiacong
Instrumentation and Methods for Astrophysics
Cosmology and Nongalactic Astrophysics
The spin-flip 21-cm signal from the Cosmic Dawn and the Epoch of Reionization is an essential probe of the conditions that led to the formation of the first luminous objects in the early Universe. However, its detection remains a major challenge owing to its low strength compared to the bright foregrounds and the requirement of precise calibration of the instrument to prevent systematics that could hinder a detection or lead to false inferences. REACH (Radio Experiment for the Analysis of Cosmic Hydrogen) is a radiometer experiment designed to detect this sky-averaged signal in the frequency range of 50--130~MHz. Using a wide-beam antenna, REACH calibration relies on internal reference sources, covering a broad range of temperatures and reflection coefficients. The choice of type and number of calibrators used significantly influences the quality of the calibration. This work investigates these effects and introduces a novel method for selecting an optimal set of calibration sources. With an optimised set, we aim to reduce calibration time, thereby increasing sky integration time while preserving calibration accuracy. We explore two optimisation strategies: one applied across the full receiver band and another performed on a frequency-by-frequency basis. Finally, we demonstrate that, with a total calibration time comparable to the conventional full-calibrator set, an optimised set with fewer calibrators achieves approximately a $15~\%$ reduction in calibrated temperature noise and improved absolute calibration of the instrument. This has implications for better calibration strategies in similar radiometer experiments.
title Optimisation of calibration sources for global 21-cm experiments: the REACH case
topic Instrumentation and Methods for Astrophysics
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2604.00105