English

Direct measurement of stellar angular diameters by the VERITAS Cherenkov Telescopes

Solar and Stellar Astrophysics 2019-04-15 v1 High Energy Astrophysical Phenomena Instrumentation and Methods for Astrophysics

Abstract

The angular size of a star is a critical factor in determining its basic properties. Direct measurement of stellar angular diameters is difficult: at interstellar distances stars are generally too small to resolve by any individual imaging telescope. This fundamental limitation can be overcome by studying the diffraction pattern in the shadow cast when an asteroid occults a star, but only when the photometric uncertainty is smaller than the noise added by atmospheric scintillation. Atmospheric Cherenkov telescopes used for particle astrophysics observations have not generally been exploited for optical astronomy due to the modest optical quality of the mirror surface. However, their large mirror area makes them well suited for such high-time-resolution precision photometry measurements. Here we report two occultations of stars observed by the VERITAS Cherenkov telescopes with millisecond sampling, from which we are able to provide a direct measurement of the occulted stars' angular diameter at the 0.1\leq0.1 milliarcsecond scale. This is a resolution never achieved before with optical measurements and represents an order of magnitude improvement over the equivalent lunar occultation method. We compare the resulting stellar radius with empirically derived estimates from temperature and brightness measurements, confirming the latter can be biased for stars with ambiguous stellar classifications.

Keywords

Cite

@article{arxiv.1904.06324,
  title  = {Direct measurement of stellar angular diameters by the VERITAS Cherenkov Telescopes},
  author = {W. Benbow and R. Bird and A. Brill and R. Brose and A. J. Chromey and M. K. Daniel and Q. Feng and J. P. Finley and L. Fortson and A. Furniss and G. H. Gillanders and C. Giuri and O. Gueta and D. Hanna and J. Halpern and T. Hassan and J. Holder and G. Hughes and T. B. Humensky and A. M. Joyce and P. Kaaret and P. Kar and N. Kelley-Hoskins and M. Kertzman and D. Kieda and M. Krause and M. J. Lang and T. T. Y. Lin and G. Maier and N. Matthews and P. Moriarty and R. Mukherjee and D. Nieto and M. Nievas-Rosillo and S. O'Brien and R. A. Ong and N. Park and A. Petrashyk and M. Pohl and E. Pueschel and J. Quinn and K. Ragan and P. T. Reynolds and G. T. Richards and E. Roache and C. Rulten and I. Sadeh and M. Santander and G. H. Sembroski and K. Shahinyan and I. Sushch and S. P. Wakely and R. M. Wells and P. Wilcox and A. Wilhelm and D. A. Williams and T. J. Williamson},
  journal= {arXiv preprint arXiv:1904.06324},
  year   = {2019}
}

Comments

Accepted for publication in Nature Astronomy