Polarized light from Sgr A* in the near-infrared $K_{s}$-band
B. Shahzamanian, A. Eckart, M. Valencia-S., G. Witzel, M. Zamaninasab,, N. Sabha, M. Garc\'ia-Mar\'in, V. Karas, G. D. Karssen, A. Borkar, M., Dov\u{c}iak, D. Kunneriath, M. Bursa, R. Buchholz, J. Moultaka, C., Straubmeier

TL;DR
This study analyzes polarized near-infrared light from Sgr A* over several years, revealing stable polarization characteristics that inform the physical conditions and geometry of the black hole's accretion process.
Contribution
It provides the first detailed statistical analysis of polarized NIR emission from Sgr A*, linking polarization properties to the source's intrinsic orientation and accretion structure.
Findings
Polarization degree typically around 20% with 10% variation.
Preferred polarization angle of approximately 13 degrees.
Flux distribution follows a power-law with an exponent of about 4.
Abstract
We present a statistical analysis of polarized near-infrared (NIR) light from Sgr A*, the radio source associated with the supermassive black hole at the center of the Milky Way. The observations have been carried out using the adaptive optics instrument NACO at the VLT UT4 in the infrared -band from 2004 to 2012. Several polarized flux excursions were observed during these years. Linear polarization at 2.2 , its statistics and time variation, can be used constrain the physical conditions of the accretion process onto this supermassive black hole. With an exponent of about 4 for the number density histogram of fluxes above 5~mJy, the distribution of polarized flux density is closely linked to the single state power-law distribution of the total -band flux densities reported earlier. We find typical polarization degrees of the order of 20\%10\% and…
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