English

Femtolens Imaging of a Quasar Central Engine Using a Dwarf Star Telescope

Astrophysics 2016-08-30 v1

Abstract

We show that it is possible to image the structure of a distant quasar on scales of 1\sim 1\,AU by constructing a telescope which uses a nearby dwarf star as its ``primary lens'' together with a satellite-borne ``secondary''. The image produced by the primary is magnified by 105\sim 10^5 in one direction but is contracted by 0.5 in the other, and therefore contains highly degenerate one-dimensional information about the two-dimensional source. We discuss various methods for extracting information about the second dimension including ``femtolens interferometry'' where one measures the interference between different parts of the one-dimensional image with each other. Assuming that the satellite could be dispatched to a position along a star-quasar line of sight at a distance rr from the Sun, the nearest available dwarf-star primary is likely to be at 15\pc(r/40AU)2\sim 15\,\pc\,(r/40\,\rm AU)^{-2}. The secondary should consist of a one-dimensional array of mirrors extending 700\sim 700\,m to achieve 1 AU resolution, or 100\sim 100\,m to achieve 4 AU resolution.

Keywords

Cite

@article{arxiv.astro-ph/9606003,
  title  = {Femtolens Imaging of a Quasar Central Engine Using a Dwarf Star Telescope},
  author = {Andrew Gould and B. Scott Gaudi},
  journal= {arXiv preprint arXiv:astro-ph/9606003},
  year   = {2016}
}

Comments

12 pages including 3 embedded figures