L-band nulling interferometry at the VLTI with Asgard/NOTT: status and plans
NOTT (formerly Hi-5) is the L'-band (3.5-4.0~microns) nulling interferometer of Asgard, an instrument suite in preparation for the VLTI visitor focus. The primary scientific objectives of NOTT include characterizing (i) young planetary systems near the snow line, a critical region for giant pla...
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creator | Defrère, Denis Laugier, Romain Marc-Antoine Martinod Garreau, Germain Missiaen, Kwinten Salman, Muhammad Raskin, Gert Dandumont, Colin Ertel, Steve Ireland, Michael J Kraus, Stefan Labadie, Lucas Mazzoli, Alexandra Medgyesi, Gyorgy Sanny, Ahmed Absil, Olivier Ábráham, Peter Berger, Jean-Philippe Bonduelle, Myriam Bigioli, Azzurra Bouzerand, Emilie Carter, Josh Cvetojevic, Nick Courtney-Barrer, Benjamin Glauser, Adrian M Gross, Simon Haubois, Xavier Noel, James Joo, Andras Peter Lagarde, Stephane Léger, Alain Leisenring, Jarron Loicq, Jérôme Martin, Guillermo Frantz Martinache Mezo, Gyorgy Morel, Sébastien Morren, Johan Ollivier, Marc Robertson, Gordon Rousseau, Hélène Schofield, Warrick Schuhler, Nicolas Taras, Adam Vandenbussche, Bart Woillez, Julien |
description | NOTT (formerly Hi-5) is the L'-band (3.5-4.0~microns) nulling interferometer of Asgard, an instrument suite in preparation for the VLTI visitor focus. The primary scientific objectives of NOTT include characterizing (i) young planetary systems near the snow line, a critical region for giant planet formation, and (ii) nearby main-sequence stars close to the habitable zone, with a focus on detecting exozodiacal dust that could obscure Earth-like planets. In 2023-2024, the final warm optics have been procured and assembled in a new laboratory at KU Leuven. First fringes and null measurements were obtained using a Gallium Lanthanum Sulfide (GLS) photonic chip that was also tested at cryogenic temperatures. In this paper, we present an overall update of the NOTT project with a particular focus on the cold mechanical design, the first results in the laboratory with the final NOTT warm optics, and the ongoing Asgard integration activities. We also report on other ongoing activities such as the characterization of the photonic chip (GLS, LiNbO3, SiO), the development of the exoplanet science case, the design of the dispersion control module, and the progress with the self-calibration data reduction software. |
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The primary scientific objectives of NOTT include characterizing (i) young planetary systems near the snow line, a critical region for giant planet formation, and (ii) nearby main-sequence stars close to the habitable zone, with a focus on detecting exozodiacal dust that could obscure Earth-like planets. In 2023-2024, the final warm optics have been procured and assembled in a new laboratory at KU Leuven. First fringes and null measurements were obtained using a Gallium Lanthanum Sulfide (GLS) photonic chip that was also tested at cryogenic temperatures. In this paper, we present an overall update of the NOTT project with a particular focus on the cold mechanical design, the first results in the laboratory with the final NOTT warm optics, and the ongoing Asgard integration activities. 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Peter ; Berger, Jean-Philippe ; Bonduelle, Myriam ; Bigioli, Azzurra ; Bouzerand, Emilie ; Carter, Josh ; Cvetojevic, Nick ; Courtney-Barrer, Benjamin ; Glauser, Adrian M ; Gross, Simon ; Haubois, Xavier ; Noel, James ; Joo, Andras Peter ; Lagarde, Stephane ; Léger, Alain ; Leisenring, Jarron ; Loicq, Jérôme ; Martin, Guillermo ; Frantz Martinache ; Mezo, Gyorgy ; Morel, Sébastien ; Morren, Johan ; Ollivier, Marc ; Robertson, Gordon ; Rousseau, Hélène ; Schofield, Warrick ; Schuhler, Nicolas ; Taras, Adam ; Vandenbussche, Bart ; Woillez, Julien</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-proquest_journals_30795590303</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2024</creationdate><topic>Circumstellar habitable zone</topic><topic>Cryogenic temperature</topic><topic>Extrasolar planets</topic><topic>Gallium lanthanum sulfide</topic><topic>Jupiter</topic><topic>Lanthanum sulfide</topic><topic>Lithium 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nulling interferometry at the VLTI with Asgard/NOTT: status and plans</atitle><jtitle>arXiv.org</jtitle><date>2024-07-11</date><risdate>2024</risdate><eissn>2331-8422</eissn><abstract>NOTT (formerly Hi-5) is the L'-band (3.5-4.0~microns) nulling interferometer of Asgard, an instrument suite in preparation for the VLTI visitor focus. The primary scientific objectives of NOTT include characterizing (i) young planetary systems near the snow line, a critical region for giant planet formation, and (ii) nearby main-sequence stars close to the habitable zone, with a focus on detecting exozodiacal dust that could obscure Earth-like planets. In 2023-2024, the final warm optics have been procured and assembled in a new laboratory at KU Leuven. First fringes and null measurements were obtained using a Gallium Lanthanum Sulfide (GLS) photonic chip that was also tested at cryogenic temperatures. In this paper, we present an overall update of the NOTT project with a particular focus on the cold mechanical design, the first results in the laboratory with the final NOTT warm optics, and the ongoing Asgard integration activities. We also report on other ongoing activities such as the characterization of the photonic chip (GLS, LiNbO3, SiO), the development of the exoplanet science case, the design of the dispersion control module, and the progress with the self-calibration data reduction software.</abstract><cop>Ithaca</cop><pub>Cornell University Library, arXiv.org</pub><oa>free_for_read</oa></addata></record> |
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subjects | Circumstellar habitable zone Cryogenic temperature Extrasolar planets Gallium lanthanum sulfide Jupiter Lanthanum sulfide Lithium niobates Main sequence stars Mechanical properties Nulling interferometry Photonics Planet formation Planetary systems Self calibration Terrestrial planets |
title | L-band nulling interferometry at the VLTI with Asgard/NOTT: status and plans |
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