Laboratory characterization of FIRSTv2 photonic chip for the study of substellar companions
K. Barjot, E. Huby, S. Vievard, N. Cvetojevic, S. Lacour, G. Martin,, V. Deo, V. Lapeyrere, D. Rouan, O. Guyon, J. Lozi, N. Jovanovic, C., Cassagenettes, G. Perrin, F. Marchis, G. Duch\^ene, T. Kotani

TL;DR
This paper presents laboratory tests of an upgraded photonic chip for the FIRSTv2 instrument, enhancing high contrast imaging capabilities for studying substellar companions with improved stability and sensitivity.
Contribution
It introduces a new photonic chip beam combiner for FIRSTv2 and reports on its laboratory characterization, demonstrating improved throughput and potential for high-resolution imaging.
Findings
Enhanced throughput of 5-input beam combiners
Successful implementation of temporal phase modulation
Potential for improved dynamic range in high contrast imaging
Abstract
FIRST (Fibered Imager foR a Single Telescope instrument) is a post-AO instrument that enables high contrast imaging and spectroscopy at spatial scales below the diffraction limit. FIRST achieves sensitivity and accuracy by a unique combination of sparse aperture masking, spatial filtering by single-mode fibers and cross-dispersion in the visible. The telescope pupil is divided into sub-pupils by an array of microlenses, coupling the light into single-mode fibers. The output of the fibers are rearranged in a non redundant configuration, allowing the measurement of the complex visibility for every baseline over the 600-900 nm spectral range. A first version of this instrument is currently integrated to the Subaru Extreme AO bench (SCExAO). This paper focuses on the on-going instrument upgrades and testings, which aim at increasing the instrument's stability and sensitivity, thus improving…
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