English

Optical IFU spectroscopy of a bipolar microquasar jet in NGC 300

High Energy Astrophysical Phenomena 2019-03-13 v1 Astrophysics of Galaxies Solar and Stellar Astrophysics

Abstract

We recently reported the discovery of a candidate jet-driving microquasar (S10) in the nearby spiral galaxy NGC 300. However, in the absence of kinematic information, we could not reliably determine the jet power or the dynamical age of the jet cavity. Here, we present optical MUSE integral field unit (IFU) observations of S10, which reveal a bipolar line-emitting jet structure surrounding a continuum-emitting central source. The optical jet lobes of S10 have a total extent of \sim 40 pc and a shock velocity of \sim 150 km s1^{-1}. Together with the jet kinematics, we exploit the MUSE coverage of the Balmer Hβ\beta line to estimate the density of the surrounding matter and therefore compute the jet power to be PjetP_{jet}\approx 6.3 ×\times 1038^{38} erg s1^{-1}. An optical analysis of a microquasar jet bubble and a consequent robust derivation of the jet power have been possible only in a handful of similar sources. This study therefore adds valuable insight into microquasar jets, and demonstrates the power of optical integral field spectroscopy in identifying and analysing these objects.

Keywords

Cite

@article{arxiv.1903.00005,
  title  = {Optical IFU spectroscopy of a bipolar microquasar jet in NGC 300},
  author = {A. F. McLeod and S. Scaringi and R. Soria and M. W. Pakull and R. Urquhart and T. J. Maccarone and C. Knigge and J. C. A. Miller-Jones and R. M. Plotkin and C. Motch and J. M. D. Kruijssen and A. Schruba},
  journal= {arXiv preprint arXiv:1903.00005},
  year   = {2019}
}

Comments

Accepted for publication in MNRAS