arXiv · 1507.07635
Capabilities of future intensity interferometers for observing fast-rotating stars: imaging with two- and three-telescope correlations
Abstract
Future large arrays of telescopes, used as intensity interferometers, can be used to image the surfaces of stars with unprecedented angular resolution. Fast-rotating, hot stars are particularly attractive targets for intensity interferometry since shorter (blue) wavelength observations do not pose additional challenges. Starting from realistic surface brightness simulations of fast-rotating stars, we discuss the capabilities of future intensity interferometers for imaging effects such as gravity darkening and rotational deformation. We find that two-telescope intensity correlation data allow reasonably good imaging of these phenomena, but can be improved with additional higher order (e.g. three-telescope) correlation data, which contain some Fourier phase information.
Explore related subjects
Keep this discovery
Paul D. Nunez, Armando Domiciano de Souza. 2015-07-28. Capabilities of future intensity interferometers for observing fast-rotating stars: imaging with two- and three-telescope correlations. https://doi.org/10.1093/mnras%2Fstv1719
Cite the original work for its findings. Save a collection to share your selection of sources.