English

Astrophotonics: a new era for astronomical instruments

Instrumentation and Methods for Astrophysics 2010-11-02 v1

Abstract

Astrophotonics lies at the interface of astronomy and photonics. This burgeoning field -- now formally recognized by the optics community -- has emerged over the past decade in response to the increasing demands of astronomical instrumentation. Early successes include: (i) planar waveguides to combine signals from widely spaced telescopes in stellar interferometry; (ii) frequency combs for ultra-high precision spectroscopy to detect planets around nearby stars; (iii) ultra-broadband fibre Bragg gratings to suppress unwanted background; (iv) photonic lanterns that allow single-mode behaviour within a multimode fibre; (v) planar waveguides to miniaturize astronomical spectrographs; (vi) large mode area fibres to generate artificial stars in the upper atmosphere for adaptive optics correction; (vii) liquid crystal polymers in optical vortex coronographs and adaptive optics systems. Astrophotonics, a field that has already created new photonic capabilities, is now extending its reach down to the Rayleigh scattering limit at ultraviolet wavelengths, and out to mid infrared wavelengths beyond 2500nm.

Keywords

Cite

@article{arxiv.0902.0415,
  title  = {Astrophotonics: a new era for astronomical instruments},
  author = {J. Bland-Hawthorn and Pierre Kern},
  journal= {arXiv preprint arXiv:0902.0415},
  year   = {2010}
}

Comments

5 pages, Editorial for the Focus Issue on Astrophotonics (Optics Express); all 12 papers are free to air at http://www.opticsinfobase.org/oe/Issue.cfm

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