Stellar intensity interferometry of Vega in photon counting mode

Author:

Zampieri Luca1ORCID,Naletto Giampiero12ORCID,Burtovoi Aleksandr13ORCID,Fiori Michele12ORCID,Barbieri Cesare12

Affiliation:

1. INAF – Astronomical Observatory of Padova, Vicolo dell’Osservatorio 5, I-35122 Padova, Italy

2. Department of Physics and Astronomy, University of Padova, Via F. Marzolo 8, I-35131 Padova, Italy

3. Centre of Studies and Activities for Space (CISAS) ‘G. Colombo’, University of Padova, Via Venezia 15, I-35131 Padova, Italy

Abstract

ABSTRACT Stellar intensity interferometry is a technique based on the measurement of the second-order spatial correlation of the light emitted from a star. The physical information provided by these measurements is the angular size and structure of the emitting source. A worldwide effort is presently underway to implement stellar intensity interferometry on telescopes separated by long baselines and on future arrays of Cherenkov telescopes. We describe an experiment of this type, realized at the Asiago Observatory (Italy), in which we performed for the first time measurements of the correlation counting photon coincidences in post-processing by means of a single photon software correlator and exploiting entirely the quantum properties of the light emitted from a star. We successfully detected the temporal correlation of Vega at zero baseline and performed a measurement of the correlation on a projected baseline of ∼2 km. The average discrete degree of coherence at zero baseline for Vega is $\lt g^{(2)} \gt \, = 1.0034 \pm 0.0008$, providing a detection with a signal-to-noise ratio S/N ≳ 4. No correlation is detected over the km baseline. The measurements are consistent with the expected degree of spatial coherence for a source with the 3.3 mas angular diameter of Vega. The experience gained with the Asiago experiment will serve for future implementations of stellar intensity interferometry on long-baseline arrays of Cherenkov telescopes.

Funder

University of Padova

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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1. Towards image synthesis with photon counting stellar intensity interferometry;Unconventional Optical Imaging IV;2024-06-18

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3. Photon counting intensity interferometry in the blue at a 0.5 m telescope;RAS Techniques and Instruments;2024-01

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