English

Temporal intensity interferometry: photon bunching on three bright stars

Instrumentation and Methods for Astrophysics 2018-08-14 v1 Optics Quantum Physics

Abstract

We report the first intensity correlation measured with star light since Hanbury Brown and Twiss' historical experiments. The photon bunching g(2)(τ,r=0)g^{(2)}(\tau, r=0), obtained in the photon counting regime, was measured for 3 bright stars, α\alpha Boo, α\alpha CMi, and β\beta Gem. The light was collected at the focal plane of a 1~m optical telescope, was transported by a multi-mode optical fiber, split into two avalanche photodiodes and digitally correlated in real-time. For total exposure times of a few hours, we obtained contrast values around 2×1032\times10^{-3}, in agreement with the expectation for chaotic sources, given the optical and electronic bandwidths of our setup. Comparing our results with the measurement of Hanbury Brown et al. on α\alpha CMi, we argue for the timely opportunity to extend our experiments to measuring the spatial correlation function over existing and/or foreseen arrays of optical telescopes diluted over several kilometers. This would enable μ\muas long-baseline interferometry in the optical, especially in the visible wavelengths with a limiting magnitude of 10.

Keywords

Cite

@article{arxiv.1708.06119,
  title  = {Temporal intensity interferometry: photon bunching on three bright stars},
  author = {W. Guerin and A. Dussaux and M. Fouché and G. Labeyrie and J. -P. Rivet and D. Vernet and F. Vakili and R. Kaiser},
  journal= {arXiv preprint arXiv:1708.06119},
  year   = {2018}
}

Comments

Accepted for publication in Mon. Not. Roy. Astron. Soc

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