Observational campaigns are revealing that planet formation is an extremely efficient mechanism, and that at the same time it leads to a wide diversity in exoplanet properties. While high resolution images of protoplanetary disks show potential signatures of planet-disk interactions, an observational characterization of directly imaged protoplanets interacting with their natal environment is still lacking, limiting our understanding of the planet formation mechanisms.
Thanks to the revolutionary capabilities of the ALMA interferometer, and the advent of upcoming infrared facilities such as JWST, the time is ripe to finally detect planets in the act of formation, and observe how their bulk and atmospheric properties is determined by the physics and chemistry of their birth surroundings. UNVEIL will bridge the gap between exoplanets and planet forming disks by directly observing and modelling the assembly of massive planets in disks at large orbital radii. Combining cutting-edge observational programs and ambitious modelling efforts, I will:
a) assess theonset of hydrodynamical instabilities facilitating the formation of planetary cores;
b) search for protoplanets in the gas kinematics of disks and estimate their mass;
c) image protoplanets in the mid-infrared and determine how they formed;
d) directly connect the chemistry of disks to the elemental abundances of protoplanet atmospheres.
This ambitious project builds upon a novel methodology that will be developed by my team to detect protoplanets in the kinematical structure of protoplanetary disks, and on my leadership position in a pioneering ALMA Large Program to characterize the gas kinematics of planet-forming disks. In synergy with my ground-breaking JWST observations, UNVEIL will build a unique legacy for the whole community, and provide observational constraints that are sorely needed to unveil the formation phases of cores and atmospheres of Saturn-Jupiter mass exoplanets.
Thanks to the revolutionary capabilities of the ALMA interferometer, and the advent of upcoming infrared facilities such as JWST, the time is ripe to finally detect planets in the act of formation, and observe how their bulk and atmospheric properties is determined by the physics and chemistry of their birth surroundings. UNVEIL will bridge the gap between exoplanets and planet forming disks by directly observing and modelling the assembly of massive planets in disks at large orbital radii. Combining cutting-edge observational programs and ambitious modelling efforts, I will:
a) assess theonset of hydrodynamical instabilities facilitating the formation of planetary cores;
b) search for protoplanets in the gas kinematics of disks and estimate their mass;
c) image protoplanets in the mid-infrared and determine how they formed;
d) directly connect the chemistry of disks to the elemental abundances of protoplanet atmospheres.
This ambitious project builds upon a novel methodology that will be developed by my team to detect protoplanets in the kinematical structure of protoplanetary disks, and on my leadership position in a pioneering ALMA Large Program to characterize the gas kinematics of planet-forming disks. In synergy with my ground-breaking JWST observations, UNVEIL will build a unique legacy for the whole community, and provide observational constraints that are sorely needed to unveil the formation phases of cores and atmospheres of Saturn-Jupiter mass exoplanets.
Overview
Contributors
FACCHINI STEFANO
Scientific Manager
Departments involved
Dipartimento di Fisica Aldo Pontremoli
Principale
Type
Horizon Europe - European Research Council (ERC)
Funder
EUROPEAN COMMISSION
External Organization Funding Organization
Date/time interval
February 1, 2023 - January 31, 2028
Project duration
60 months
Research Areas
Publications
Outputs (65)
A 2 au Resolution View by ALMA of the Planet-hosting WISPIT 2 Disk
THE ASTROPHYSICAL JOURNAL LETTERSUNIVERSITY OF CHICAGO PRESS
2026
Academic Article
Open Access
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A Protoplanet Candidate in the PDS 66 Disk Indicated by Silicon Sulfide Isotopologues
THE ASTROPHYSICAL JOURNAL LETTERS2026
Academic Article
Open Access
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Astrometric view of companions in the inner dust cavities of protoplanetary discs
ASTRONOMY & ASTROPHYSICSSPRINGER
2026
Academic Article
Open Access
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Circumplanetary Disk Candidate in the Disk of HD 163296 Traced by Localized Emission from Simple Organics
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2026
Academic Article
Open Access
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Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): V721 CrA and BN CrA have wide and structured disks in the polarised infrared
ASTRONOMY & ASTROPHYSICSSPRINGER
2026
Academic Article
Open Access
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Hunting for methanol in the water-rich, planet-forming disk around HL Tau
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2026
Academic Article
Open Access
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True spin-orbit obliquity distribution: Data-driven confirmation of no clustering of misaligned planets
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2026
Academic Article
Open Access
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Water Vapor Emission at the Warm Cavity Wall of the HD 100546 Disk as Revealed by ALMA
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) : AMERICAN ASTRONOMICAL SOCIETY
2026
Academic Article
Open Access
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Zooming into the water snow line: High-resolution water observations of the HL Tau disk
ASTRONOMY & ASTROPHYSICSSPRINGER
2026
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Open Access
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exoALMA XXII: A Two-dimensional Atlas of Deviations from Keplerian Disks
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2026
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exoALMA. XIX. Confirmation of Non-thermal Line Broadening in the DM Tau Protoplanetary Disk
THE ASTROPHYSICAL JOURNAL LETTERSIOP PUBLISHING LTD
2026
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exoALMA. XXI. The Morphology and Dynamics of Vertical Flows
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2026
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exoALMA. XXIII. Estimating Disk and Planet Properties from Dust Morphologies with DBNets 2.0
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2026
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exoALMA. XXIV. Formaldehyde Emission in Protoplanetary Disks of exoALMA Compared with Their Properties and Dynamical State
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2026
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A correlation between accretion and outflow rates for class II young stellar objects with full and transition disks
ASTRONOMY & ASTROPHYSICS2025
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A new look at disk winds and external photoevaporation in the σ-Orionis cluster
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2025
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2025
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Direct Measurement of Extinction in a Planet-hosting Gap
THE ASTRONOMICAL JOURNALAMERICAN INSTITUTE OF PHYSICS : INSTITUTE OF PHYSICS (IOP) : AMERICAN ASTRONOMICAL SOCIETY
2025
Academic Article
Open Access
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Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): Evidence of planet–disk interaction in the 2MASSJ16120668-3010270 system
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2025
Academic Article
Open Access
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Grand Design Spiral Arms in the Compact, Embedded Protoplanetary Disk of Haro 6-13
THE ASTROPHYSICAL JOURNALAMERICAN PHYSICAL SOCIETY (APS) : AMERICAN INSTITUTE OF PHYSICS
2025
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Inner disc and circumplanetary material in the PDS 70 system: Insights from multi-epoch, multi-frequency ALMA observations
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2025
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Leaky dust trap in the PDS 70 disc revealed by ALMA Band 9 observations
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETYOXFORD UNIVERSITY PRESS
2025
Academic Article
Open Access
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Multi-frequency analysis of the ALMA and VLA high resolution continuum observations of the substructured disc around CI Tau
ASTRONOMY & ASTROPHYSICSSPRINGER
2025
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Open Access
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2025
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SO Emission in the Dynamically Perturbed Protoplanetary Disks around CQ Tau and MWC 758
THE ASTROPHYSICAL JOURNALAMERICAN PHYSICAL SOCIETY (APS) : AMERICAN INSTITUTE OF PHYSICS
2025
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2025
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The two-dimensional pressure structure of the HD 163296 protoplanetary disk as probed by multi-molecule kinematics
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2025
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Open Access
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Unveiling a protoplanet candidate embedded in the HD 135344B disk with VLT/ERIS
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2025
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exoALMA. I. Science Goals, Project Design, and Data Products
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. II. Data Calibration and Imaging Pipeline
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. III. Line-intensity Modeling and System Property Extraction from Protoplanetary Disks
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. IV. Substructures, Asymmetries, and the Faint Outer Disk in Continuum Emission
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. IX. Regularized Maximum Likelihood Imaging of Non-Keplerian Features
THE ASTROPHYSICAL JOURNAL. LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. V. Gaseous Emission Surfaces and Temperature Structures
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. VI. Rotating under Pressure: Rotation Curves, Azimuthal Velocity Substructures, and Gas Pressure Variations
THE ASTROPHYSICAL JOURNAL LETTERSAMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. VII. Benchmarking Hydrodynamics and Radiative Transfer Codes
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. VIII. Probabilistic Moment Maps and Data Products Using Nonparametric Linear Models
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. X. Channel Maps Reveal Complex 12CO Abundance Distributions and a Variety of Kinematic Structures with Evidence for Embedded Planets
THE ASTROPHYSICAL JOURNAL LETTERSAMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. XI. ALMA Observations and Hydrodynamic Models of LkCa 15: Implications for Planetary Mass Companions in the Dust Continuum Cavity
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. XII. Weighing and Sizing exoALMA Disks with Rotation Curve Modelling
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. XIV. Gas Surface Densities in the RX J1604.3−2130 A Disk from Pressure-broadened CO Line Wings
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. XVI. Predicting Signatures of Large-scale Turbulence in Protoplanetary Disks
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. XVII. Characterizing the Gas Dynamics around Dust Asymmetries
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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exoALMA. XVIII. Interpreting Large-scale Kinematic Structures as Moderate Warping
THE ASTROPHYSICAL JOURNAL LETTERSINSTITUTE OF PHYSICS (IOP) PUBLISHING : UNIVERSITY OF CHICAGO PRESS : AMERICAN ASTRONOMICAL SOCIETY
2025
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A tell-tale tracer for externally irradiated protoplanetary disks: Comparing the [C I] 8727 Å line and ALMA observations in proplyds
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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ALMA high-resolution observations unveil planet formation shaping molecular emission in the PDS 70 disk
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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Binary orbit and disks properties of the RW Aur system using ALMA observations
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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Disk Evolution Study Through Imaging of Nearby Young Stars (DESTINYS): HD 34700 A unveils an inner ring
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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Kaleidoscope of irradiated disks: MUSE observations of proplydsin the Orion Nebula Cluster. I. Sample presentation and ionization front sizes
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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Mapping the Vertical Gas Structure of the Planet-hosting PDS 70 Disk
THE ASTROPHYSICAL JOURNALIOP PUBLISHING
2024
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Resolved ALMA observations of water in the inner astronomical units of the HL Tau disk
NATURE ASTRONOMYNATURE PUBLISHING GROUP
2024
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Rotation curves in protoplanetary disks with thermal stratification
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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2024
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The SPHERE view of the Taurus star-forming region. The full census of planet-forming disks with GTO and DESTINYS programs
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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The external photoevaporation of structured protoplanetary disks
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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Weighing protoplanetary discs with kinematics: Physical model, method, and benchmark
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2024
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A spectacular jet from the bright 244-440 Orion proplyd: the MUSE NFM view
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2023
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Constraining the gas distribution in the PDS 70 disc as a method to assess the effect of planet-disc interactions
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2023
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MagAO-X and HST High-contrast Imaging of the AS209 Disk at Hα
THE ASTRONOMICAL JOURNALINSTITUTE OF PHYSICS (IOP) PUBLISHING : AMERICAN ASTRONOMICAL SOCIETY
2023
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Observing Planetesimal Formation under Streaming Instability in the Rings of HD 163296
THE ASTROPHYSICAL JOURNAL LETTERSEDP SCIENCES
2023
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2023
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2023
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Tentative co-orbital submillimeter emission within the Lagrangian region L5 of the protoplanet PDS 70 b
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2023
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2023
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The Disc Miner. II. Revealing gas substructures and kinematic signatures from planet-disc interaction through line profile analysis
ASTRONOMY & ASTROPHYSICSEDP SCIENCES
2023
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