Bibliography
Rank A publications as first author
- Laugier et al. 2023 : Asgard/NOTT: L-band nulling interferometry at the VLTI. I. Simulating the expected high-contrast performance https://ui.adsabs.harvard.edu/abs/2023A&A…671A.110L (A&A, Vol. 671, A110.)
- Laugier et al. 2020 : Kernel nullers for an arbitrary number of apertures https://ui.adsabs.harvard.edu/abs/2020A&A…642A.202L (A&A, Vol. 642, A202.)
- Laugier et al. 2020 : Angular differential kernel phases https://ui.adsabs.harvard.edu/abs/2020A&A…636A..21L (A&A, Vol. 636, A21.)
- Laugier et al. 2019 : Recovering saturated images for high dynamic kernel-phase analysis. Application to the determination of dynamical masses for the system Gl 494AB https://ui.adsabs.harvard.edu/abs/2019A&A…623A.164L (A&A, Vol. 623, A164.)
First author publications (by date)
- Laugier et al. 2025 : Characterization in an era of nulling interferometry: Towards ground-breaking space missions https://ui.adsabs.harvard.edu/abs/2025sf2a.conf…61L (sf2a.conf, Vol. 61-64.)
- Laugier et al. 2024 : NIFITS: building a new data standard to enable the rise of nulling interferometry https://ui.adsabs.harvard.edu/abs/2024sf2a.conf..207L (sf2a.conf, Vol. 207-211.)
- Laugier et al. 2024 : Update on the large interferometer for exoplanets (LIFE) https://ui.adsabs.harvard.edu/abs/2024sf2a.conf..201L (sf2a.conf, Vol. 201-205.)
- Laugier et al. 2024 : Asgard/NOTT: water vapor and CO2 atmospheric dispersion compensation system https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..2CL (SPIE, Vol. 13095, 130952C.)
- Laugier et al. 2024 : VLTI Unit Telescope coudé train vibration control upgrade for GRAVITY+ https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..0ML (SPIE, Vol. 13095, 130950M.)
- Laugier et al. 2022 : The expected performance of nulling at the VLTI down to five mas https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..21L (SPIE, Vol. 12183, 1218321.)
- Laugier et al. 2021 : The Hi-5 nulling instrument and SCIFYsim: an end-to-end simulator for integrated optics beam combiners https://ui.adsabs.harvard.edu/abs/2021sf2a.conf..339L (sf2a.conf, Vol. 339-342.)
- Laugier et al. 2020 : Reconciling kernel-phase and coronagraphy: new steps towards combining the performance of opposing techniques https://ui.adsabs.harvard.edu/abs/2020SPIE11446E..1QL (SPIE, Vol. 11446, 114461Q.)
- Laugier et al. 2019 : Reconciling coronagraphy and kernel-phase for direct detection of exoplanets https://ui.adsabs.harvard.edu/abs/2019sf2a.conf..231L (sf2a.conf, Vol. Di.)
Other collaborations (by date)
- Garreau et al. 2026 : Asgard/NOTT: Cryogenic characterization of the mid-infrared chip https://ui.adsabs.harvard.edu/abs/2026arXiv260720191G (arXiv, Vol. arXiv:2607.20191.)
- El Dayem et al. 2026 : Discovery of a star sensitive to the spin of Sgr A* https://ui.adsabs.harvard.edu/abs/2026arXiv260712664E (arXiv, Vol. arXiv:2607.12664.)
- Trevascus et al. 2026 : Using VLTI/GRAVITY+ to determine the identity of a third planet candidate in the PDS 70 system https://ui.adsabs.harvard.edu/abs/2026arXiv260626249T (arXiv, Vol. arXiv:2606.26249.)
- Quanz et al. 2026 : Exploring Exoplanets with Interferometry https://ui.adsabs.harvard.edu/abs/2026arXiv260610108Q (arXiv, Vol. arXiv:2606.10108.)
- Hansen et al. 2026 : A Preliminary Exploration on the Effects of Baseline Length for the LIFE Space Mission https://ui.adsabs.harvard.edu/abs/2026PASP..138f5003H (PASP, Vol. 138, 065003.)
- Chauvin et al. 2026 : Continuing to Advance European High Contrast Imaging Research and Development towards HWO and LIFE https://ui.adsabs.harvard.edu/abs/2026arXiv260415077C (arXiv, Vol. arXiv:2604.15077.)
- Ireland et al. 2026 : First Fringes for Asgard — Phase 1 https://ui.adsabs.harvard.edu/abs/2026Msngr.196…29I (Msngr, Vol. 196, 29-31.)
- Gravity+ Collaboration et al. 2026 : First light for the GRAVITY+ Adaptive Optics: Extreme adaptive optics for the Very Large Telescope Interferometer https://ui.adsabs.harvard.edu/abs/2026A&A…707A.115G (A&A, Vol. 707, A115.)
- Morujão et al. 2026 : Towards Unified Vibration Control for the VLTI: Multi-Sensor Data Fusion as a Path Beyond GRAVITY+ https://ui.adsabs.harvard.edu/abs/2026vltb.confE..15M (vltb.conf, Vol. 15.)
- Gravity+ Collaboration et al. 2026 : Spatially resolved broad-line region in a quasar at z = 4: Dynamical black hole mass and prominent outflow https://ui.adsabs.harvard.edu/abs/2026A&A…706A..99G (A&A, Vol. 706, A99.)
- Stuber et al. 2026 : Interferometric Detection and Orbit Modeling of the Subcomponent in the Hot-dust System κ Tuc A: A Low-mass Star on an Eccentric Orbit in a Hierarchical-quintuple System https://ui.adsabs.harvard.edu/abs/2026AJ….171….1S (AJ, Vol. 171, 1.)
- Kral et al. 2026 : Exomoon search with VLTI/GRAVITY around the substellar companion HD 206893 B https://ui.adsabs.harvard.edu/abs/2026A&A…705A.217K (A&A, Vol. 705, A217.)
- Sanny et al. 2026 : Asgard/NOTT: L-band nulling interferometry at the VLTI: III. The mid-infrared integrated optics beam combiner for NOTT https://ui.adsabs.harvard.edu/abs/2026A&A…705A..37S (A&A, Vol. 705, A37.)
- Laugier et al. 2025 : Characterization in an era of nulling interferometry: Towards ground-breaking space missions https://ui.adsabs.harvard.edu/abs/2025sf2a.conf…61L (sf2a.conf, Vol. 61-64.)
- Huber et al. 2025 : Robust Data Interpretation for Perturbed Nulling Interferometers via Proper Handling of Correlated Errors https://ui.adsabs.harvard.edu/abs/2025AJ….170..227H (AJ, Vol. 170, 227.)
- Dannert et al. 2025 : Consequences of Non-Gaussian Instrumental Noise in Perturbed Nulling Interferometers https://ui.adsabs.harvard.edu/abs/2025AJ….170..193D (AJ, Vol. 170, 193.)
- Loicq et al. 2025 : Exoplanet explorer: a single spacecraft nulling interferometer https://ui.adsabs.harvard.edu/abs/2025SPIE13699E..27L (SPIE, Vol. 13699, 1369927.)
- Garreau et al. 2025 : The HOSTS survey: Suspected variable dust emission and constraints on companions around θ Boo https://ui.adsabs.harvard.edu/abs/2025A&A…699A.107G (A&A, Vol. 699, A107.)
- Martinod et al. 2025 : GRIP: Generic data Reduction for nulling Interferometry Package https://ui.adsabs.harvard.edu/abs/2025ascl.soft06009M (ascl.soft, Vol. ascl:2506.009.)
- Cacaj et al. 2025 : Photobombing for the Large Interferometer For Exoplanets (LIFE). A New Criterion for Target Confusion and Application to a Mid-infrared Rotating Nulling Interferometer https://ui.adsabs.harvard.edu/abs/2025AJ….169..244C (AJ, Vol. 169, 244.)
- Martinod et al. 2025 : GRIP: a generic data reduction package for nulling interferometry https://ui.adsabs.harvard.edu/abs/2025JATIS..11b8003M (JATIS, Vol. 11, 028003.)
- Laginja et al. 2025 : Advancing European high-contrast imaging R&D towards the Habitable Worlds Observatory https://ui.adsabs.harvard.edu/abs/2025Ap&SS.370…29L (Ap&SS, Vol. 370, 29.)
- Laugier et al. 2024 : NIFITS: building a new data standard to enable the rise of nulling interferometry https://ui.adsabs.harvard.edu/abs/2024sf2a.conf..207L (sf2a.conf, Vol. 207-211.)
- Laugier et al. 2024 : Update on the large interferometer for exoplanets (LIFE) https://ui.adsabs.harvard.edu/abs/2024sf2a.conf..201L (sf2a.conf, Vol. 201-205.)
- Wu et al. 2024 : First Resolution of Microlensed Images of a Binary-lens Event https://ui.adsabs.harvard.edu/abs/2024ApJ…977..229W (ApJ, Vol. 977, 229.)
- Cesario et al. 2024 : Large Interferometer For Exoplanets (LIFE): XIV. Finding terrestrial protoplanets in the galactic neighborhood https://ui.adsabs.harvard.edu/abs/2024A&A…692A.172C (A&A, Vol. 692, A172.)
- Gravity+ Collaboration et al. 2024 : The GRAVITY+ Project: GRAVITY-Wide and the Beam Compressor Differential Delay Lines https://ui.adsabs.harvard.edu/abs/2024Msngr.193…37G (Msngr, Vol. 193, 37-43.)
- Loicq et al. 2024 : Single spacecraft nulling interferometer for exoplanets: preliminary concepts https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..36L (SPIE, Vol. 13095, 1309536.)
- Laugier et al. 2024 : Asgard/NOTT: water vapor and CO2 atmospheric dispersion compensation system https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..2CL (SPIE, Vol. 13095, 130952C.)
- Huber et al. 2024 : Analytical and numerical instrumental noise simulations for the Large Interferometer For Exoplanets (LIFE) https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..1FH (SPIE, Vol. 13095, 130951F.)
- Glauser et al. 2024 : The Large Interferometer For Exoplanets (LIFE): a space mission for mid-infrared nulling interferometry https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..1DG (SPIE, Vol. 13095, 130951D.)
- Martinod et al. 2024 : Generic data reduction for nulling interferometry package: the grip of a single data reduction package on all the nulling interferometers https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..1AM (SPIE, Vol. 13095, 130951A.)
- Garreau et al. 2024 : Asgard/NOTT: first lab assembly and experimental results https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..0PG (SPIE, Vol. 13095, 130950P.)
- Laugier et al. 2024 : VLTI Unit Telescope coudé train vibration control upgrade for GRAVITY+ https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..0ML (SPIE, Vol. 13095, 130950M.)
- Defrère et al. 2024 : L-band nulling interferometry at the VLTI with Asgard/NOTT: status and plans https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..0FD (SPIE, Vol. 13095, 130950F.)
- Martinod et al. 2024 : Pushing high angular resolution and high contrast observations on the VLTI from Y to L band with the Asgard instrumental suite: integration status and plans https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..0DM (SPIE, Vol. 13095, 130950D.)
- Fabricius et al. 2024 : GRAVITY+ Wide: towards hundreds of z ∼ 2 AGN, larger throughput and improved vibrational control https://ui.adsabs.harvard.edu/abs/2024SPIE13095E..0BF (SPIE, Vol. 13095, 130950B.)
- Medgyesi et al. 2024 : Mechanical design for the cold optics of NOTT, a nulling interferometer for VLTI https://ui.adsabs.harvard.edu/abs/2024IAUGA..32P2580M (IAUGA, Vol. 2580.)
- Kraus et al. 2024 : The Asgard Instrument Suite at VLTI https://ui.adsabs.harvard.edu/abs/2024eas..conf.2109K (eas..conf, Vol. 2109.)
- Nowak et al. 2024 : Upgrading the GRAVITY fringe tracker for GRAVITY+. Tracking the white-light fringe in the non-observable optical path length state-space https://ui.adsabs.harvard.edu/abs/2024A&A…684A.184N (A&A, Vol. 684, A184.)
- Abuter et al. 2024 : A dynamical measure of the black hole mass in a quasar 11 billion years ago https://ui.adsabs.harvard.edu/abs/2024Natur.627..281A (Natur, Vol. 627, 281-285.)
- Xin et al. 2024 : Coronagraphic Data Post-processing Using Projections on Instrumental Modes https://ui.adsabs.harvard.edu/abs/2024ApJ…963…96X (ApJ, Vol. 963, 96.)
- Garreau et al. 2024 : Asgard/NOTT: L-band nulling interferometry at the VLTI. II. Warm optical design and injection system https://ui.adsabs.harvard.edu/abs/2024JATIS..10a5002G (JATIS, Vol. 10, 015002.)
- Jovanovic et al. 2023 : 2023 Astrophotonics Roadmap: pathways to realizing multi-functional integrated astrophotonic instruments https://ui.adsabs.harvard.edu/abs/2023JPhP….5d2501J (JPhP, Vol. 5, 042501.)
- Matsuo et al. 2023 : Large Interferometer For Exoplanets (LIFE). XI. Phase-space synthesis decomposition for planet detection and characterization https://ui.adsabs.harvard.edu/abs/2023A&A…678A..97M (A&A, Vol. 678, A97.)
- Martinod et al. 2023 : High-angular resolution and high contrast observations from Y to L band at the Very Large Telescope Interferometer with the Asgard Instrumental suite https://ui.adsabs.harvard.edu/abs/2023JATIS…9b5007M (JATIS, Vol. 9, 025007.)
- Laugier et al. 2023 : Asgard/NOTT: L-band nulling interferometry at the VLTI. I. Simulating the expected high-contrast performance https://ui.adsabs.harvard.edu/abs/2023A&A…671A.110L (A&A, Vol. 671, A110.)
- Hansen et al. 2023 : Large Interferometer For Exoplanets (LIFE). VII. Practical implementation of a five-telescope kernel-nulling beam combiner with a discussion on instrumental uncertainties and redundancy benefits https://ui.adsabs.harvard.edu/abs/2023A&A…670A..57H (A&A, Vol. 670, A57.)
- Gravity+ Collaboration et al. 2022 : The GRAVITY+ Project: Towards All-sky, Faint-Science, High-Contrast Near-Infrared Interferometry at the VLTI https://ui.adsabs.harvard.edu/abs/2022Msngr.189…17A (Msngr, Vol. 189, 17-22.)
- GRAVITY+ Collaboration et al. 2022 : First light for GRAVITY Wide. Large separation fringe tracking for the Very Large Telescope Interferometer https://ui.adsabs.harvard.edu/abs/2022A&A…665A..75G (A&A, Vol. 665, A75.)
- Courtney-Barrer et al. 2022 : Towards a better understanding of OPD limitations for higher sensitivity and contrast at the VLTI https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..28C (SPIE, Vol. 12183, 1218328.)
- Dandumont et al. 2022 : VLTI/Hi-5: detection yield predictions for young giant exoplanets https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..27D (SPIE, Vol. 12183, 1218327.)
- Laugier et al. 2022 : The expected performance of nulling at the VLTI down to five mas https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..21L (SPIE, Vol. 12183, 1218321.)
- Garreau et al. 2022 : Design of the VLTI/Hi-5 light injection system https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..20G (SPIE, Vol. 12183, 1218320.)
- Bigioli et al. 2022 : Measuring and compensating vibrations at the VLTI: MANHATTAN-II self-intrinsic noise and hardware extension https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..1ZB (SPIE, Vol. 12183, 121831Z.)
- Dandumont et al. 2022 : Technical requirements and optical design of the Hi-5 spectrometer https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..1YD (SPIE, Vol. 12183, 121831Y.)
- Mortimer et al. 2022 : Beam combiner for the Asgard/BIFROST instrument https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..1UM (SPIE, Vol. 12183, 121831U.)
- N’Diaye et al. 2022 : Statistical tests with multi-wavelength Kernel-phase analysis for the detection and characterization of planetary companions https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..1MN (SPIE, Vol. 12183, 121831M.)
- Sanny et al. 2022 : Development of the four-telescope photonic nuller of Hi-5 for the characterization of exoplanets in the mid-IR https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..16S (SPIE, Vol. 12183, 1218316.)
- Martinod et al. 2022 : High-angular and high-contrast VLTI observations from Y to M band with the Asgard instrumental suite https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..10M (SPIE, Vol. 12183, 1218310.)
- Defrère et al. 2022 : L-band nulling interferometry at the VLTI with Asgard/Hi-5: status and plans https://ui.adsabs.harvard.edu/abs/2022SPIE12183E..0HD (SPIE, Vol. 12183, 121830H.)
- Dannert et al. 2022 : Large Interferometer For Exoplanets (LIFE). II. Signal simulation, signal extraction, and fundamental exoplanet parameters from single-epoch observations https://ui.adsabs.harvard.edu/abs/2022A&A…664A..22D (A&A, Vol. 664, A22.)
- Defrère et al. 2022 : Asgard: enabling short-wavelength, high-spectral resolution and high-contrast milliarcsecond imaging at VLTI https://ui.adsabs.harvard.edu/abs/2022eas..conf..330D (eas..conf, Vol. 330.)
- Cvetojevic et al. 2022 : 3-beam self-calibrated Kernel nulling photonic interferometer https://ui.adsabs.harvard.edu/abs/2022arXiv220604977C (arXiv, Vol. arXiv:2206.04977.)
- Laugier et al. 2021 : The Hi-5 nulling instrument and SCIFYsim: an end-to-end simulator for integrated optics beam combiners https://ui.adsabs.harvard.edu/abs/2021sf2a.conf..339L (sf2a.conf, Vol. 339-342.)
- Kammerer et al. 2021 : Mid-infrared photometry of the T Tauri triple system with kernel phase interferometry https://ui.adsabs.harvard.edu/abs/2021A&A…646A..36K (A&A, Vol. 646, A36.)
- Lozi et al. 2020 : Status of the SCExAO instrument: recent technology upgrades and path to a system-level demonstrator for PSI https://ui.adsabs.harvard.edu/abs/2020SPIE11448E..0NL (SPIE, Vol. 11448, 114480N.)
- Laugier et al. 2020 : Reconciling kernel-phase and coronagraphy: new steps towards combining the performance of opposing techniques https://ui.adsabs.harvard.edu/abs/2020SPIE11446E..1QL (SPIE, Vol. 11446, 114461Q.)
- Defrère et al. 2020 : Review and scientific prospects of high-contrast optical stellar interferometry https://ui.adsabs.harvard.edu/abs/2020SPIE11446E..1JD (SPIE, Vol. 11446, 114461J.)
- Laugier et al. 2020 : Kernel nullers for an arbitrary number of apertures https://ui.adsabs.harvard.edu/abs/2020A&A…642A.202L (A&A, Vol. 642, A202.)
- Martinache et al. 2020 : Kernel-phase analysis: Aperture modeling prescriptions that minimize calibration errors https://ui.adsabs.harvard.edu/abs/2020A&A…636A..72M (A&A, Vol. 636, A72.)
- Laugier et al. 2020 : Angular differential kernel phases https://ui.adsabs.harvard.edu/abs/2020A&A…636A..21L (A&A, Vol. 636, A21.)
- Guyon et al. 2020 : Wavefront Sensing and Control R&D on the SCExAO Testbed https://ui.adsabs.harvard.edu/abs/2020AAS…23528006G (AAS, Vol. 235, 280.06.)
- Laugier et al. 2019 : Reconciling coronagraphy and kernel-phase for direct detection of exoplanets https://ui.adsabs.harvard.edu/abs/2019sf2a.conf..231L (sf2a.conf, Vol. Di.)
- Lai et al. 2019 : Local Turbulence: Effects and causes https://ui.adsabs.harvard.edu/abs/2019arXiv191202680L (arXiv, Vol. arXiv:1912.02680.)
- Ceau et al. 2019 : Kernel-phase detection limits. Hypothesis testing and the example of JWST NIRISS full-pupil images https://ui.adsabs.harvard.edu/abs/2019A&A…630A.120C (A&A, Vol. 630, A120.)
- Lai et al. 2019 : Direct measure of dome seeing with a localized optical turbulence sensor https://ui.adsabs.harvard.edu/abs/2019MNRAS.484.5568L (MNRAS, Vol. 484, 5568-5577.)
- Laugier et al. 2019 : Recovering saturated images for high dynamic kernel-phase analysis. Application to the determination of dynamical masses for the system Gl 494AB https://ui.adsabs.harvard.edu/abs/2019A&A…623A.164L (A&A, Vol. 623, A164.)
- Blazek et al. 2019 : LIGO/Virgo S190425z: TAROT-GRANDMA observation report. https://ui.adsabs.harvard.edu/abs/2019GCN.24227….1B (GCN, Vol. 24227, 1.)
- Blazek et al. 2019 : LIGO/Virgo S190421ar: TAROT-GRANDMA observation report. https://ui.adsabs.harvard.edu/abs/2019GCN.24162….1B (GCN, Vol. 24162, 1.)
- Coward et al. 2017 : LIGO/Virgo G298048: Zadko Telescope 7 day observations of the OT candidate SSS17a/DLT17ck https://ui.adsabs.harvard.edu/abs/2017GCN.21744….1C (GCN, Vol. 21744, 1.)
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- Klotz et al. 2017 : LIGO/Virgo G298048: TZAC TAROT Reunion (TRE) observations https://ui.adsabs.harvard.edu/abs/2017GCN.21558….1K (GCN, Vol. 21558, 1.)
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- Abbott et al. 2016 : Supplement: “Localization and Broadband Follow-up of the Gravitational-wave Transient GW150914” (2016, ApJL, 826, L13) https://ui.adsabs.harvard.edu/abs/2016ApJS..225….8A (ApJS, Vol. 225, 8.)
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