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Improved polarization calibration of the BICEP3 CMB polarimeter at the South Pole

Authors :
Cornelison, James
Verges, Clara
Ade, P A.
Ahmed, Zeeshan
Amiri, Mandana
Barkats, Denis
Basu Thakur, Ritoban
Beck, Dominic
Bischoff, Colin A.
Bock, James J.
Buza, Victor
Cheshire, James R.
Connors, Jake
Crumrine, Michael
Cukierman, Ari Jozef
Denison, Edward
Dierickx, Marion
Duband, Lionel
Eiben, Miranda
Fatigoni, Sofia
Filippini, Jeff P.
Giannakopoulos, Christos
Goeckner-Wald, Neil
Goldfinger, David C.
Grayson, James A.
Grimes, Paul
Hall, Grantland
Halal, George
Halpern, Mark
Hand, Emma
Harrison, Sam A.
Henderson, Shawn
Hildebrandt, Sergi
Hilton, Gene C.
Hubmayr, Johannes
Hui, Howard
Irwin, Kent D.
Kang, Jae Hwan
Karkare, Kirit S.
Kefeli, Sinan
Kovac, John
Kuo, Chao-Lin
Lau, King
Leitch, Erik M.
Lennox, Amber
Liu, Tongtian
Look, Karsten
Megerian, K(oko). G.
Minutolo, Lorenzo
Moncelsi, Lorenzo
Nakato, Yuka
Namikawa, Toshiya
Nguyen, H. T.
O'brient, Roger
Palladino, Steven
Petroff, Matthew
Prouve, Thomas
Pryke, Clement
Racine, Benjamin
Reintsema, Carl D.
Salatino, Maria
Schillaci, Alessandro
Schmitt, Benjamin
Singari, Baibhav
Soliman, Ahmed
St Germaine, Tyler
Steinbach, Bryan
Sudiwala, Rashmi
Thompson, Keith L.
Tsai, Calvin
Tucker, Carole
Turner, Anthony D.
Umiltà, Caterina
Vieregg, Abigail G.
Wandui, Albert
Weber, Alexis C.
Wiebe, Don
Willmert, Justin
Wu, Wai Ling K.
Yang, Hung-I
Yoon, Ki Won
Young, Edward
Yu, Cyndia
Zeng, Lingzhen
Zhang, Cheng
Zhang, Silvia
Zmuidzinas, Jonas
Gao, Jian-Rong
Cornelison, James
Verges, Clara
Ade, P A.
Ahmed, Zeeshan
Amiri, Mandana
Barkats, Denis
Basu Thakur, Ritoban
Beck, Dominic
Bischoff, Colin A.
Bock, James J.
Buza, Victor
Cheshire, James R.
Connors, Jake
Crumrine, Michael
Cukierman, Ari Jozef
Denison, Edward
Dierickx, Marion
Duband, Lionel
Eiben, Miranda
Fatigoni, Sofia
Filippini, Jeff P.
Giannakopoulos, Christos
Goeckner-Wald, Neil
Goldfinger, David C.
Grayson, James A.
Grimes, Paul
Hall, Grantland
Halal, George
Halpern, Mark
Hand, Emma
Harrison, Sam A.
Henderson, Shawn
Hildebrandt, Sergi
Hilton, Gene C.
Hubmayr, Johannes
Hui, Howard
Irwin, Kent D.
Kang, Jae Hwan
Karkare, Kirit S.
Kefeli, Sinan
Kovac, John
Kuo, Chao-Lin
Lau, King
Leitch, Erik M.
Lennox, Amber
Liu, Tongtian
Look, Karsten
Megerian, K(oko). G.
Minutolo, Lorenzo
Moncelsi, Lorenzo
Nakato, Yuka
Namikawa, Toshiya
Nguyen, H. T.
O'brient, Roger
Palladino, Steven
Petroff, Matthew
Prouve, Thomas
Pryke, Clement
Racine, Benjamin
Reintsema, Carl D.
Salatino, Maria
Schillaci, Alessandro
Schmitt, Benjamin
Singari, Baibhav
Soliman, Ahmed
St Germaine, Tyler
Steinbach, Bryan
Sudiwala, Rashmi
Thompson, Keith L.
Tsai, Calvin
Tucker, Carole
Turner, Anthony D.
Umiltà, Caterina
Vieregg, Abigail G.
Wandui, Albert
Weber, Alexis C.
Wiebe, Don
Willmert, Justin
Wu, Wai Ling K.
Yang, Hung-I
Yoon, Ki Won
Young, Edward
Yu, Cyndia
Zeng, Lingzhen
Zhang, Cheng
Zhang, Silvia
Zmuidzinas, Jonas
Gao, Jian-Rong

Abstract

The BICEP3 Polarimeter is a small aperture, refracting telescope, dedicated to the observation of the Cosmic Microwave Background (CMB) at 95GHz. It is designed to target degree angular scale polarization patterns, in particular the very-much-sought-after primordial B-mode signal, which is a unique signature of cosmic inflation. The polarized signal from the sky is reconstructed by differencing co-localized, orthogonally polarized superconducting Transition Edge Sensor (TES) bolometers. In this work, we present absolute measurements of the polarization response of the detectors for more than approximately 800 functioning detector pairs of the BICEP3 experiment, out of a total of approximately 1000. We use a specifically designed Rotating Polarized Source (RPS) to measure the polarization response at multiple source and telescope boresight rotation angles, to fully map the response over 360 degrees. We present here polarization properties extracted from on-site calibration data taken in January 2022. A similar calibration campaign was performed in 2018, but we found that our constraint was dominated by systematics on the level of approximately 0.5° . After a number of improvements to the calibration set-up, we are now able to report a significantly lower level of systematic contamination. In the future, such precise measurements will be used to constrain physics beyond the standard cosmological model, namely cosmic birefringence.

Details

Database :
OAIster
Notes :
10.1117/12.2620212
Publication Type :
Electronic Resource
Accession number :
edsoai.on1379324408
Document Type :
Electronic Resource