Measuring Temporal Photon Bunching in Blackbody Radiation
arXiv:1403.7432 · doi:10.1088/2041-8205/789/1/L10
Abstract
Light from thermal black body radiators such as stars exhibits photon bunching behaviour at sufficiently short timescales. However, with available detector bandwidths, this bunching signal is difficult to be directly used for intensity interferometry with sufficient statistics in astronomy. Here we present an experimental technique to increase the photon bunching signal in blackbody radiation via spectral filtering of the light source. Our measurements reveal strong temporal photon bunching in light from blackbody radiation, including the Sun. Such filtering techniques may revive the interest in intensity interferometry as a tool in astronomy.
5 pages, 5 figures (minor bugfixes, reference updates)
References in corpus (3)
Cited by in corpus (6)
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- Superresolving Imaging of Irregular Arrays of Thermal Light Sources using Multiphoton Interferences
- Intensity interferometry: Optical imaging with kilometer baselines
- Development of a Digital Astronomical Intensity Interferometer: laboratory tests with thermal light
- Two-photon superbunching effect of broadband chaotic stationary light at femtosecond timescale based on cascaded Michelson interferometer
- Comparing Different Approaches for Stellar Intensity Interferometry