Measurement of Interstellar Polarization and Estimation of Galactic Extinction for the Direction of X-ray Black Hole Binary V404 Cygni
Ryosuke Itoh, Yasuyuki T. Tanaka, Koji S. Kawabata, Makoto Uemura,, Makoto Watanabe, Yasushi Fukazawa, Yuka Kanda, Hiroshi Akitaya, Yuki, Moritani, Tatsuya Nakaoka, Miho Kawabata, Kensei Shiki, Michitoshi Yoshida,, Yumiko Oasa, Jun Takahashi

TL;DR
This study estimates the interstellar extinction toward V404 Cygni using polarization measurements, revealing properties of interstellar dust and identifying a spectral break in the source's emission.
Contribution
It introduces a method to determine Galactic extinction for V404 Cygni via interstellar polarization, providing new insights into dust grain size and spectral energy distribution.
Findings
Estimated extinction: E(B-V)=1.2±0.2, A(V)=3.0–3.6
Detected smaller dust grains than the Galactic average
Identified a spectral break in the optical/NIR spectrum
Abstract
V404 Cygni is a well-known black hole binary candidate thought to have relativistic jets. It showed extreme outbursts on June 2015, characterized by a large amplitude and short time variation of flux in the radio, optical, and X-ray bands. Not only disk emission, but also synchrotron radiation from the relativistic jets were suggested by radio observations. However, it is difficult to measure the accurate spectral shape in the optical/near infrared band because there are uncertainties of interstellar extinction. To estimate the extinction value for V404 Cygni, we performed photopolarimetric and spectroscopic observations of V404 Cygni and nearby field stars. Here, we estimate the Galactic extinction using interstellar polarization based on the observation that the origin of the optical polarization is the interstellar medium, and investigate the properties of interstellar polarization…
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