Coronagraphic Low Order Wave Front Sensor : post-processing sensitivity enhancer for high performance coronagraphs
Fr\'ed\'eric P. A. Vogt, Frantz Martinache, Olivier Guyon, Takashi, Yoshikawa, Kaito Yokochi, Vincent Garrel, and Taro Matsuo

TL;DR
This paper introduces a post-processing method using CLOWFS data to calibrate residual leaks in high-contrast coronagraphic imaging, significantly improving speckle suppression and exoplanet detection accuracy.
Contribution
It demonstrates that CLOWFS data can be effectively used in post-processing to enhance coronagraphic imaging performance, a novel approach for exoplanet direct imaging.
Findings
Achieved speckle calibration to 1/300 of raw speckle level in laboratory tests.
CLOWFS post-processing outperforms idealized PSF subtraction by 40 times.
Successfully implemented and tested on the Subaru Coronagraphic Extreme AO system.
Abstract
Detection and characterization of exoplanets by direct imaging requires a coronagraph designed to deliver high contrast at small angular separation. To achieve this, an accurate control of low order aberrations, such as pointing and focus errors, is essential to optimize coronagraphic rejection and avoid the possible confusion between exoplanet light and coronagraphic leaks in the science image. Simulations and laboratory prototyping have shown that a Coronagraphic Low Order Wave-Front Sensor (CLOWFS), using a single defocused image of a reflective focal plane ring, can be used to control tip-tilt to an accuracy of 10^{-3} lambda/D. This paper demonstrates that the data acquired by CLOWFS can also be used in post-processing to calibrate residual coronagraphic leaks from the science image. Using both the CLOWFS camera and the science camera in the system, we quantify the accuracy of the…
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