4.6 Article

DISCOVERY OF SUBSTRUCTURE IN THE SCATTER-BROADENED IMAGE OF SGR A

Journal

ASTROPHYSICAL JOURNAL LETTERS
Volume 794, Issue 1, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/2041-8205/794/1/L14

Keywords

black hole physics; Galaxy: nucleus; ISM: structure; radio continuum: ISM; scattering techniques: interferometric

Funding

  1. US National Science Foundation [AST-1008865]
  2. Dynasty Foundation
  3. Division Of Astronomical Sciences
  4. Direct For Mathematical & Physical Scien [1008865] Funding Source: National Science Foundation

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We have detected substructure within the smooth scattering disk of the celebrated Galactic center radio source Sagittarius A* (Sgr A*). We observed this structure at 1.3 cm wavelength with the Very Long Baseline Array together with the Green Bank Telescope, on baselines of up to 3000 km, long enough to completely resolve the average scattering disk. Such structure is predicted theoretically as a consequence of refraction by large-scale plasma fluctuations in the interstellar medium. Along with the much-studied theta(d) proportional to lambda(2) scaling of angular broadening theta(d) with observing wavelength., our observations indicate that the spectrum of interstellar turbulence is shallow with an inner scale larger than 300 km. The substructure is consistent with an intrinsic size of about 1 mas at 1.3 cm wavelength, as inferred from deconvolution of the average scattering. Further observations of the substructure can set stronger constraints on the properties of scattering material and on the intrinsic size of Sgr A*. These constraints will guide our understanding of the effects of scatter broadening and the emission physics near the black hole in images with the Event Horizon Telescope at millimeter wavelengths.

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