arXiv · 2205.06517
Simulations of astrometric planet detection in Alpha Centauri by intensity interferometry
Abstract
Recent dynamical studies indicate that the possibility of an Earth-like planet around $α\;$Cen A or B should be taken seriously. Such a planet, if it exists, would perturb the orbital astrometry by $<10 \ μ\rm as$, which is $10^{-6}$ of the separation between the two stars. We assess the feasibility of detecting such perturbations using ground-based intensity interferometry. We simulate a dedicated setup consisting of four 40-cm telescopes equipped with photon counters and correlators with time resolution $0.1\,\rm ns$, and a sort of matched filter implemented through an aperture mask. The astrometric error from one night of observing $α\;$Cen AB is $\approx0.5\,\rm mas$. The error decreases if longer observing times and multiple spectral channels are used, as $(\hbox{channels}\times\hbox{nights})^{-1/2}$.
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Km Nitu Rai, Subrata Sarangi, Prasenjit Saha, Soumen Basak. 2022-09-14. Simulations of astrometric planet detection in Alpha Centauri by intensity interferometry. https://doi.org/10.1093/mnras%2Fstac2433
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