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Paper Citation Record · LEDGER

Accretion of Uranus and Neptune: confronting different giant impact scenarios

As of 12 August 2026, this Paper Citation Record lists 58 of 58 outbound references and 0 inbound Pith citation observations for arXiv:2412.02785.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2412.02785 v1

Coverage vector

measured 58 of 58 reference resolution

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measured 58 of 58 standing notices

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Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Source: cited_works

Reference resolution

58 of 58 outbound references displayed

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External citation measurements

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Outbound references

Observation b09a290b-1afa-49c3-9cc9-128f51f4da51 · outbound

This paper cites Atmospheric mass loss due to giant impacts: the importance of the thermal component for hydrogen-helium envelopes.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Atmospheric mass loss due to giant impacts: the importance of the thermal component for hydrogen-helium envelopes

Reference 1

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Observation fe231305-7de7-4cc3-8f23-3c36334db9d7 · outbound

This paper cites Sándor, Z., Guilera, O.M., Regály, Z., Lyra, W.,.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Sándor, Z., Guilera, O.M., Regály, Z., Lyra, W.,

Reference 6

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Observation 4d16866d-316e-4f88-8841-a6f536b7bbf3 · outbound

This paper cites Influence of an inner disc on the orbital evolution of massive planets migrating in resonance.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Influence of an inner disc on the orbital evolution of massive planets migrating in resonance

Reference 9

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Observation a69a7aa8-9822-4c88-8b13-969bc849a4a0 · outbound

This paper cites The Formation of Uranus and Neptune in Solid-Rich Feeding Zones: Connecting Chemistry and Dynamics.

Accretion of Uranus and Neptune: confronting different giant impact scenarios The Formation of Uranus and Neptune in Solid-Rich Feeding Zones: Connecting Chemistry and Dynamics

Reference 10

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Observation a8f97f46-314b-4f73-a2c6-6ac16eb91e50 · outbound

This paper cites Planetesimal formation during protoplanetary disk buildup.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Planetesimal formation during protoplanetary disk buildup

Reference 12

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Observation e13021fb-b854-4d15-8a27-d994c6c39fac · outbound

This paper cites The Exchange of Mass and Angular Momentum in the Impact Event of Ice Giant Planets: Implications for the origin of Uranus.

Accretion of Uranus and Neptune: confronting different giant impact scenarios The Exchange of Mass and Angular Momentum in the Impact Event of Ice Giant Planets: Implications for the origin of Uranus

Reference 13

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Observation 5b0bbdb4-c730-4f42-bbed-5a7b2a7ab62a · outbound

This paper cites Interior Models of Uranus and Neptune.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Interior Models of Uranus and Neptune

Reference 15

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Observation 0fc466f0-33ce-4a95-b8dd-34c5092e426c · outbound

This paper cites Formation of planetary systems by pebble accretion and migration: Hot super-Earth systems from breaking compact resonant chains.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Formation of planetary systems by pebble accretion and migration: Hot super-Earth systems from breaking compact resonant chains

Reference 19

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Observation 2ef63b60-6a26-43b8-b43a-7f6525ba3d2e · outbound

This paper cites Annual Review of Earth and Planetary Sciences 45, 359–387.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Annual Review of Earth and Planetary Sciences 45, 359–387

Reference 21

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Observation ca2d0383-9ffb-4339-b2d1-6a09e44c5512 · outbound

This paper cites Growth of asteroids, planetary embryos and Kuiper belt objects by chondrule accretion.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Growth of asteroids, planetary embryos and Kuiper belt objects by chondrule accretion

Reference 22

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Observation 814ef0bc-8c7f-4120-b416-d158e89759f9 · outbound

This paper cites Rapid growth of gas-giant cores by pebble accretion.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Rapid growth of gas-giant cores by pebble accretion

Reference 27

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Observation ea0f33eb-d68e-4879-b63f-b856589c0ac2 · outbound

This paper cites Growing the gas-giant planets by the gradual accumulation of pebbles.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Growing the gas-giant planets by the gradual accumulation of pebbles

Reference 30

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Observation f05d22fa-ff31-43ab-a124-56280a49d37b · outbound

This paper cites Models of the Collisional Damping Scenario for Ice Giant Planets and Kuiper Belt Formatio.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Models of the Collisional Damping Scenario for Ice Giant Planets and Kuiper Belt Formatio

Reference 31

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Observation b3c4e1f3-36ec-4964-b858-4af732404259 · outbound

This paper cites Modeling the Formation of Giant Planet Cores I: Evaluating Key Processes.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Modeling the Formation of Giant Planet Cores I: Evaluating Key Processes

Reference 32

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Observation f5d2c4a6-7159-43ec-8bcf-c69c6b16e596 · outbound

This paper cites Embryos grown in the dead zone: Assembling the first protoplanetary cores in low mass self-gravitating circumstellar disks of gas and solids.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Embryos grown in the dead zone: Assembling the first protoplanetary cores in low mass self-gravitating circumstellar disks of gas and solids

Reference 33

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Observation 34a3601c-032d-44d5-b54f-44dbaa27b92c · outbound

This paper cites The Astrophysical Journal 642, 478–487.

Accretion of Uranus and Neptune: confronting different giant impact scenarios The Astrophysical Journal 642, 478–487

Reference 35

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Observation f3c5eaf1-bcc7-42ee-873d-e0d61270724a · outbound

This paper cites NOTE: Explaining why the Uranian satellites have equatorial prograde orbits despite the large planetary obliquity.

Accretion of Uranus and Neptune: confronting different giant impact scenarios NOTE: Explaining why the Uranian satellites have equatorial prograde orbits despite the large planetary obliquity

Reference 37

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Observation 53420929-80fd-482e-802b-d4a6ef14f6e1 · outbound

This paper cites Uranus and Neptune: Origin, Evolution and Internal Structure.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Uranus and Neptune: Origin, Evolution and Internal Structure

Reference 38

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Observation b77cef26-d798-4bf3-b881-7e91c1075bb2 · outbound

This paper cites The effect of gas drag on the growth of protoplanets -- Analytical expressions for the accretion of small bodies in laminar disks.

Accretion of Uranus and Neptune: confronting different giant impact scenarios The effect of gas drag on the growth of protoplanets -- Analytical expressions for the accretion of small bodies in laminar disks

Reference 42

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Observation e2529c80-761e-4407-a773-b38dbf54dc63 · outbound

This paper cites How the formation of Neptune shapes the Kuiper belt.

Accretion of Uranus and Neptune: confronting different giant impact scenarios How the formation of Neptune shapes the Kuiper belt

Reference 43

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Observation 55bfb9b0-fcdf-4de2-8022-c59fc7fd9c4d · outbound

This paper cites What do we Really Know about Uranus and Neptune?.

Accretion of Uranus and Neptune: confronting different giant impact scenarios What do we Really Know about Uranus and Neptune?

Reference 44

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Observation aefb11dd-d562-4167-a2b9-aedc3bb2bf8b · outbound

This paper cites Bifurcation in the history of Uranus and Neptune: the role of giant impacts.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Bifurcation in the history of Uranus and Neptune: the role of giant impacts

Reference 46

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Observation c061d9c3-dc68-4059-b97a-469b72f5dff0 · outbound

This paper cites Planetesimal and planet formation in transient dust traps.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Planetesimal and planet formation in transient dust traps

Reference 51

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This paper cites Consequences of Giant Impacts on Early Uranus for Rotation, Internal Structure, Debris, and Atmospheric Erosion.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Consequences of Giant Impacts on Early Uranus for Rotation, Internal Structure, Debris, and Atmospheric Erosion

Reference 52

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This paper cites Possible in situ formation of Uranus and Neptune via Pebble Accretion.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Possible in situ formation of Uranus and Neptune via Pebble Accretion

Reference 55

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Accretion of Uranus and Neptune: confronting different giant impact scenarios Spinning up planetary bodies by pebble accretion

Reference 56

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Observation ae50cf7c-7ee6-4e98-8005-f621cb831bee · outbound

This paper cites Icarus 67, 164–180.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Icarus 67, 164–180

Reference 57

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This paper cites The Formation of Uranus & Neptune: Challenges and Implications For Intermediate-Mass Exoplanets.

Accretion of Uranus and Neptune: confronting different giant impact scenarios The Formation of Uranus & Neptune: Challenges and Implications For Intermediate-Mass Exoplanets

Reference 69

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This paper cites Tilting Uranus: Collisions versus Spin--Orbit Resonance.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Tilting Uranus: Collisions versus Spin--Orbit Resonance

Reference 78

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This paper cites Statistical Study of the Early Solar System's Instability with 4, 5 and 6 Giant Planets.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Statistical Study of the Early Solar System's Instability with 4, 5 and 6 Giant Planets

Reference 117

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This paper cites Co-accretion + giant impact origin of the Uranus system: Tilting Impact.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Co-accretion + giant impact origin of the Uranus system: Tilting Impact

Reference 123

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This paper cites Salmon,J.,Canup,R.M.,2022.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Salmon,J.,Canup,R.M.,2022

Reference 1972

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This paper cites The Astrophysical Journal 241, 425–441.

Accretion of Uranus and Neptune: confronting different giant impact scenarios The Astrophysical Journal 241, 425–441

Reference 1980

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This paper cites Icarus 67, 375–390.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Icarus 67, 375–390

Reference 1986

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Observation e700dd59-6840-4b64-ba7e-21767268186e · outbound

This paper cites Icarus 77, 330–357.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Icarus 77, 330–357

Reference 1989

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Observation 6efc4756-2d46-4634-a296-e11af90c1339 · outbound

This paper cites Nature 365, 819–821.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Nature 365, 819–821

Reference 1993

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Observation 6e11ca1e-aafc-463a-aca9-80281e8d7736 · outbound

This paper cites Icarus 124, 62–85.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Icarus 124, 62–85

Reference 1996

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Observation 8487fa68-acc3-4379-82f1-b5a6bd6565cd · outbound

This paper cites Icarus 125, 302–316.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Icarus 125, 302–316

Reference 1997

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Observation cba3673e-a674-4f67-996e-97d8c28f74e8 · outbound

This paper cites Icarus 131, 171–178.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Icarus 131, 171–178

Reference 1998

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Observation 65ebd7c6-c1ae-4480-a8f5-37845b6d2e6b · outbound

This paper cites Icarus 152, 205–224.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Icarus 152, 205–224

Reference 2001

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Observation 1e4437ed-d92f-4027-945c-c13a71ec55e7 · outbound

This paper cites an unresolved cited work.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Unresolved cited work

Reference 2002

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Observation 6335d72a-afd3-499b-97f1-ae7b9683531b · outbound

This paper cites Oligarchic growth of giant planets.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Oligarchic growth of giant planets

Reference 2003

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Observation dc2d22bc-da99-4836-8e7d-b9ad0b2704c9 · outbound

This paper cites Astronomy & Astrophysics 450, 833–853.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Astronomy & Astrophysics 450, 833–853

Reference 2006

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Observation f4eceb3c-6461-4147-a83f-d5ca06a16d69 · outbound

This paper cites an unresolved cited work.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Unresolved cited work

Reference 2007

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Observation 86b9f9b8-dc51-4c80-8e28-ed2228941d6d · outbound

This paper cites Three-dimensional simulations of multiple protoplanets embedded in a protostellar disc.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Three-dimensional simulations of multiple protoplanets embedded in a protostellar disc

Reference 2008

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Observation 98bc784b-9f25-4dee-bc79-9a5c0c2c75ad · outbound

This paper cites A collisionless scenario for Uranus tilting.

Accretion of Uranus and Neptune: confronting different giant impact scenarios A collisionless scenario for Uranus tilting

Reference 2010

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Observation c242e74c-c5fa-4626-ab99-da7fa08e2bf5 · outbound

This paper cites Young Solar System's Fifth Giant Planet?.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Young Solar System's Fifth Giant Planet?

Reference 2011

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Observation 2a547ba6-1a6e-430b-bc12-359022adc931 · outbound

This paper cites Considerations on the accretion of Uranus and Neptune by mutual collisions of planetary embryos in the vicinity of Jupiter and Saturn.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Considerations on the accretion of Uranus and Neptune by mutual collisions of planetary embryos in the vicinity of Jupiter and Saturn

Reference 2012

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Observation ca52f98a-eb0f-4af5-ba43-9509e13d5864 · outbound

This paper cites New indication for a dichotomy in the interior structure of Uranus and Neptune from the application of modified shape and rotation data.

Accretion of Uranus and Neptune: confronting different giant impact scenarios New indication for a dichotomy in the interior structure of Uranus and Neptune from the application of modified shape and rotation data

Reference 2013

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Observation 696e1b66-d707-482f-97a0-2bf253d6e872 · outbound

This paper cites The growth of planets by pebble accretion in evolving protoplanetary discs.

Accretion of Uranus and Neptune: confronting different giant impact scenarios The growth of planets by pebble accretion in evolving protoplanetary discs

Reference 2015

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Observation 1789177b-e625-401a-96f4-d44c08da3db6 · outbound

This paper cites Close-in planetesimal formation by pile-up of drifting pebbles.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Close-in planetesimal formation by pile-up of drifting pebbles

Reference 2016

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Observation 99fa604d-134b-4988-a671-4fcb1caebe0f · outbound

This paper cites Giant planet formation at the pressure maxima of protoplanetary disks.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Giant planet formation at the pressure maxima of protoplanetary disks

Reference 2017

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source=pdf_text observed=2026-08-11T23:13:10.581370Z digest=sha256:13d0d3aeb0c789d1d166f8ee64bd7bec27c5da975a3a5cce92fd568f4a3b9937

Observation aa21516b-c384-4055-9ef3-ab3e6b7ba4e9 · outbound

This paper cites Pebble isolation mass --- scaling law and implications for the formation of super-Earths and gas giants.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Pebble isolation mass --- scaling law and implications for the formation of super-Earths and gas giants

Reference 2018

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source=pdf_text observed=2026-08-11T23:13:10.528642Z digest=sha256:30676d9eb04426236dea28111f902a9da15213a066286a4b8a98fed8f932a83b

Observation 4e6e8288-2356-4a32-a719-093279079268 · outbound

This paper cites Formation of planetary systems by pebble accretion and migration: How the radial pebble flux determines a terrestrial-planet or super-Earth growth mode.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Formation of planetary systems by pebble accretion and migration: How the radial pebble flux determines a terrestrial-planet or super-Earth growth mode

Reference 2019

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Observation 92e450ff-97ad-44df-8bdd-35b356dbc40a · outbound

This paper cites Planet formation by pebble accretion in ringed disks.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Planet formation by pebble accretion in ringed disks

Reference 2020

Resolution
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local_arxiv, observed 2026-08-11T23:13:11.384449Z

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No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

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Observation 6ad38942-500d-4b72-9806-f5fedaa90eae · outbound

This paper cites Could Uranus and Neptune form by collisions of planetary embryos?.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Could Uranus and Neptune form by collisions of planetary embryos?

Reference 2021

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local_arxiv, observed 2026-08-11T23:13:11.855895Z

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Observation 6ab30833-9fa3-4a76-bad5-958d0a64d98f · outbound

This paper cites On the mass of gas giant planets: Is Saturn a failed gas giant?.

Accretion of Uranus and Neptune: confronting different giant impact scenarios On the mass of gas giant planets: Is Saturn a failed gas giant?

Reference 2023

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Observation 596b5c03-b19a-448e-a1e4-00190f48f0e3 · outbound

This paper cites Can the giant planets of the Solar System form via pebble accretion in a smooth protoplanetary disc?.

Accretion of Uranus and Neptune: confronting different giant impact scenarios Can the giant planets of the Solar System form via pebble accretion in a smooth protoplanetary disc?

Reference 2024

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