A Significant Detection of X-ray Polarization in Sco X-1 with PolarLight and Constraints on the Corona Geometry

Author:

Long Xiangyun,Feng HuaORCID,Li Hong,Zhu Jiahuan,Wu Qiong,Huang Jiahui,Minuti Massimo,Jiang Weichun,Yang Dongxin,Citraro Saverio,Nasimi Hikmat,Yu Jiandong,Jin Ge,Zeng Ming,An Peng,Jiang Jiachen,Costa Enrico,Baldini LucaORCID,Bellazzini RonaldoORCID,Brez Alessandro,Latronico LucaORCID,Sgrò CarmeloORCID,Spandre Gloria,Pinchera Michele,Muleri FabioORCID,Soffitta PaoloORCID

Abstract

Abstract We report the detection of X-ray polarization in the neutron-star low-mass X-ray binary Scorpius (Sco) X-1 with PolarLight. The result is energy-dependent, with a nondetection in 3–4 keV but a 4σ detection in 4–8 keV; it is also flux-dependent in the 4–8 keV band, with a nondetection when the source displays low fluxes but a 5σ detection during high fluxes, in which case we obtain a polarization fraction of 0.043 ± 0.008 and a polarization angle of 52.°6 ± 5.°4. This confirms a previous marginal detection with OSO-8 in the 1970s and marks Sco X-1 as the second astrophysical source with a significant polarization measurement in the keV band. The measured polarization angle is in line with the jet orientation of the source on the sky plane (54°), which is supposedly the symmetry axis of the system. Combining previous spectral analysis, our measurements suggest that an optically thin corona is located in the transition layer under the highest accretion rates, and disfavor the extended accretion disk corona model.

Funder

National Natural Science Foundation of China

CAS Strategic Priority Program on Space Science

National Key R\&D Project

Tsinghua University Initiative Scientific Research Program

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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