Concept of an achromatic stellar coronagraph and its application for detecting extrasolar planets
Bhavesh Jaiswal

TL;DR
This paper introduces a novel achromatic stellar coronagraph that uses birefringent crystals and polarization techniques to effectively block starlight across all wavelengths, aiding in the detection of extrasolar planets.
Contribution
A new type of stellar coronagraph design utilizing birefringent crystals and polarization rotation for achromatic star light suppression.
Findings
Theoretical calculations confirm effective star light blocking at all wavelengths.
Design can be applied to Earth-like planet detection with small telescopes.
The concept offers a promising approach for direct imaging of exoplanets.
Abstract
Imaging the planets that orbit around other stars requires blocking the host star which is usually 8-10 orders of magnitude brighter than the planets. This is achieved with the help of a stellar coronagraph. In the current work, a concept of a new type of stellar coronagraph is introduced where the star light is blocked by a linear polarizer in the collimated beam. It is based on differential rotation between the linear polarization state of planet light and that of star light. This is achieved with the help of a set of thick birefringent crystals in the collimated beam of a telescope where the planet light is made to travel extra optical path length compared to star light. By adjusting the orientation and thickness of the crystal, the optical path length can be made to cause a phase difference of {\pi}, just enough to rotate the initial plane of polarization by 90{\deg} for…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Optical Polarization and Ellipsometry · Astronomy and Astrophysical Research
