arXiv · 2609.24540
Silencing the stellar glare with kernel-nulling and active phase control on photonic chips
Abstract
Characterizing exoplanets and finding biosignatures are among the hottest topics in astronomy. This quest is challenged by the brightness contrast between the faint planet and the overwhelming glare of the host star, their small angular separation, and observing conditions degraded by optical aberrations. Nulling interferometry is a promising technique to achieve this goal by fulfilling requirements for both high contrast and high angular resolution. Photonic Integrated Circuits (PICs) provide compactness, design versatility, and scalability needed for nulling. With the PHOTONICS project, we aim to create novel coherent combination architectures, based on a multimode interferometer (MMI) coupler and on-chip active phase control with no moving parts. We present the first lab tests of a four-beam kernel-nuller made out of a single MMI coupler with active phase control: ABCD fringe-tracking and the characterization of the contrast detection limits of a four-beam kernel-nuller.
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Marc-Antoine Martinod, Vincent Foriel, Nick Cvetojevic, Frantz Martinache, Jeronimo Calderon-Gomez, Roxanne Ligi, David Mary. 2026-09-21. Silencing the stellar glare with kernel-nulling and active phase control on photonic chips. https://doi.org/10.1117/12.3102798
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