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Paper Citation Record · LEDGER

Hamiltonian Neural Networks

As of 22 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 33 inbound Pith citation observations for arXiv:1906.01563.

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pith.paper-citation-record.v1
1906.01563 v3

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measured 0 of 0 reference resolution

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measured 33 of 33 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-22T06:32:14.747728+00:00

measured 33 of 33 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-14T04:48:03.903836Z

measured 1 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-08-05T02:28:24.338817Z

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External citation measurements

317
arxiv_reference, observed 2026-08-05T02:28:24.338817Z

Outbound references

No outbound reference observations are available for this paper version.

Pith citing papers

Observation e6b11d80-b7f9-40f0-afec-a4a94a9046a6 · inbound

Port-Hamiltonian Approach to Neural Network Training cites this paper.

Port-Hamiltonian Approach to Neural Network Training Hamiltonian Neural Networks

Reference 20

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Observation 3c51c20b-77cf-4dd1-95c2-16b9a0cc81dd · inbound

Universal Differential Equations for Scientific Machine Learning cites this paper.

Universal Differential Equations for Scientific Machine Learning Hamiltonian Neural Networks

Reference 14

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arxiv_id, observed 2026-05-18T00:24:43.451186Z

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Observation 164838b0-b876-4da0-9a9a-485434c07b82 · inbound

Graph Attention Hamiltonian Neural Networks: A Lattice System Analysis Model Based on Structural Learning cites this paper.

Graph Attention Hamiltonian Neural Networks: A Lattice System Analysis Model Based on Structural Learning Hamiltonian Neural Networks

Reference 37

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Observation e7d5789d-e7b8-41c8-8cf3-a9251a03e199 · inbound

Predicting Change, Not States: An Alternate Framework for Neural PDE Surrogates cites this paper.

Predicting Change, Not States: An Alternate Framework for Neural PDE Surrogates Hamiltonian Neural Networks

Reference 57

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Observation ff4b078a-fd9d-4e2d-884e-6a8aee3aaafd · inbound

Efficient PINNs via Multi-Head Unimodular Regularization of the Solutions Space cites this paper.

Efficient PINNs via Multi-Head Unimodular Regularization of the Solutions Space Hamiltonian Neural Networks

Reference 35

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Observation 267ce6c6-dc3c-4786-a56f-4d3d639dd0cc · inbound

Symmetry-preserving neural networks in lattice field theories cites this paper.

Symmetry-preserving neural networks in lattice field theories Hamiltonian Neural Networks

Reference 57

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Observation 51447153-ec9a-4d89-a271-a449eb454b4f · inbound

Area Scaling of Dynamical Degrees of Freedom in Regularised Scalar Field Theory cites this paper.

Area Scaling of Dynamical Degrees of Freedom in Regularised Scalar Field Theory Hamiltonian Neural Networks

Reference 67

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arxiv_id, observed 2026-05-16T05:17:22.623732Z

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Observation 7fe8304a-a9c9-4f86-917b-f390081cfa4c · inbound

Gradient Networks for Universal Magnetic Modeling of Synchronous Machines cites this paper.

Gradient Networks for Universal Magnetic Modeling of Synchronous Machines Hamiltonian Neural Networks

Reference 2019

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Observation 142259bd-35fd-4297-90a3-721653056bf8 · inbound

Hamiltonian Graph Inference Networks: Joint structure discovery and dynamics prediction for lattice Hamiltonian systems from trajectory data cites this paper.

Hamiltonian Graph Inference Networks: Joint structure discovery and dynamics prediction for lattice Hamiltonian systems from trajectory data Hamiltonian Neural Networks

Reference 49

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arxiv_id, observed 2026-05-08T23:14:26.489421Z

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Observation c34c0450-6436-4a71-ac8f-33acdd496fe0 · inbound

PI-TTA: Physics-Informed Source-Free Test-Time Adaptation for Robust Human Activity Recognition on Mobile Devices cites this paper.

PI-TTA: Physics-Informed Source-Free Test-Time Adaptation for Robust Human Activity Recognition on Mobile Devices Hamiltonian Neural Networks

Reference 25

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arxiv_id, observed 2026-05-11T23:36:25.987066Z

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Observation b1326fbf-afda-4a6a-8be9-de40ef0f0d42 · inbound

Symplectic Neural Operators for Learning Infinite Dimensional Hamiltonian Systems cites this paper.

Symplectic Neural Operators for Learning Infinite Dimensional Hamiltonian Systems Hamiltonian Neural Networks

Reference 25

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arxiv_id, observed 2026-05-19T19:23:13.019305Z

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Observation d6e2ad8f-30ee-4d53-a177-63cbb8a807e1 · inbound

Physics-Informed Graph Neural Network Surrogates for Turbulent Nanoparticle Dispersion in Dental Clinical Environments cites this paper.

Physics-Informed Graph Neural Network Surrogates for Turbulent Nanoparticle Dispersion in Dental Clinical Environments Hamiltonian Neural Networks

Reference 29

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arxiv_id, observed 2026-05-20T06:43:05.794473Z

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Observation 7c15adfb-4d97-4792-b05d-9fe978e67c8c · inbound

Beyond Isotropy in JEPAs: Hamiltonian Geometry and Symplectic Prediction cites this paper.

Beyond Isotropy in JEPAs: Hamiltonian Geometry and Symplectic Prediction Hamiltonian Neural Networks

Reference 8

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arxiv_id, observed 2026-05-20T06:48:05.673592Z

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Observation ea70a15e-59d1-444e-a20f-ff1b36697135 · inbound

A comparative study of accuracy and rollout stability of temporal surrogate models cites this paper.

A comparative study of accuracy and rollout stability of temporal surrogate models Hamiltonian Neural Networks

Reference 7

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arxiv_id, observed 2026-06-30T12:34:38.557173Z

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Observation 030f5012-426d-4e51-bf24-0fa3c4e7d0df · inbound

UWM-JEPA: Predictive World Models That Imagine in Belief Space cites this paper.

UWM-JEPA: Predictive World Models That Imagine in Belief Space Hamiltonian Neural Networks

Reference 24

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arxiv_id, observed 2026-06-29T22:54:00.895252Z

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Observation d92f23bd-b3db-4a8b-bd36-8b1f2c2b8731 · inbound

Physics-constrained identification of graph-based thermal networks for spacecraft digital twins cites this paper.

Physics-constrained identification of graph-based thermal networks for spacecraft digital twins Hamiltonian Neural Networks

Reference 17

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arxiv_id, observed 2026-06-29T10:53:18.977221Z

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Observation 5bb81474-afcd-46e2-be38-eb0001b23966 · inbound

Physically Viable World Models: A Case for Query-Conditioned Embodied AI cites this paper.

Physically Viable World Models: A Case for Query-Conditioned Embodied AI Hamiltonian Neural Networks

Reference 23

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arxiv_id, observed 2026-06-29T09:13:16.522837Z

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Observation 91b4cb84-b06c-4623-9d0a-f4d63a3f091c · inbound

Can Predicted Dynamics Exist in the Physical World? cites this paper.

Can Predicted Dynamics Exist in the Physical World? Hamiltonian Neural Networks

Reference 29

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arxiv_id, observed 2026-06-30T13:04:39.976144Z

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Observation e4165f82-6a8a-4edf-a28a-00560e488e55 · inbound

Robots Need More than VLA and World Models cites this paper.

Robots Need More than VLA and World Models Hamiltonian Neural Networks

Reference 53

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arxiv_id, observed 2026-07-02T13:46:59.264577Z

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Observation 060937fa-31bf-4da8-851b-427f8472671c · inbound

Between Amnesia and Chaos: A Memory Stability Expressivity Trilemma for Trainable Dissipative Oscillator Networks cites this paper.

Between Amnesia and Chaos: A Memory Stability Expressivity Trilemma for Trainable Dissipative Oscillator Networks Hamiltonian Neural Networks

Reference 3

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arxiv_id, observed 2026-07-02T22:37:26.585924Z

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Observation 9c40048b-e036-4689-a901-f8b84e73a4d7 · inbound

Mechanical Field Networks: Structured Neural Dynamics for Multivariate Systems cites this paper.

Mechanical Field Networks: Structured Neural Dynamics for Multivariate Systems Hamiltonian Neural Networks

Reference 9

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arxiv_id, observed 2026-06-27T17:21:06.763983Z

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Observation 24038dd7-337b-4235-a7fe-4df5ffab53b0 · inbound

NEXUS: Neural Energy Fields for Physically Consistent Contact-Rich 3D Object Dynamics cites this paper.

NEXUS: Neural Energy Fields for Physically Consistent Contact-Rich 3D Object Dynamics Hamiltonian Neural Networks

Reference 20

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arxiv_id, observed 2026-07-03T17:18:43.329512Z

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Observation d178a94b-a92c-4780-8928-780312c8be95 · inbound

Reconstructing Galactic Gravitational Potentials from Stellar Kinematics with Physics-Informed Neural Networks cites this paper.

Reconstructing Galactic Gravitational Potentials from Stellar Kinematics with Physics-Informed Neural Networks Hamiltonian Neural Networks

Reference 144

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arxiv_id, observed 2026-07-03T22:29:00.688911Z

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Observation cfc1ccd2-a09a-4a9d-a9f6-3fd405cbc01c · inbound

Symplecticity-preserving prediction of parameter-dependent Hamiltonian dynamics by Generalized Kernel Interpolation cites this paper.

Symplecticity-preserving prediction of parameter-dependent Hamiltonian dynamics by Generalized Kernel Interpolation Hamiltonian Neural Networks

Reference 7

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arxiv_id, observed 2026-06-26T20:19:56.042031Z

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Observation 5b0de3fc-5694-4cbf-b409-59736a76daee · inbound

When Do Conservation Laws Survive Learned Representations? Certified Horizons for Latent World Models cites this paper.

When Do Conservation Laws Survive Learned Representations? Certified Horizons for Latent World Models Hamiltonian Neural Networks

Reference 1

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arxiv_id, observed 2026-07-04T16:29:57.586007Z

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Observation 53bba261-2468-4b20-afbd-8800590be184 · inbound

When Do Conservation Laws Survive Learned Representations? Certified Horizons for Latent World Models cites this paper.

When Do Conservation Laws Survive Learned Representations? Certified Horizons for Latent World Models Hamiltonian Neural Networks

Reference 1

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arxiv_id, observed 2026-07-03T22:59:01.428549Z

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Observation 0bdf828c-64a4-4fd9-931a-cf1c8c5e2825 · inbound

Gravitational Duals from Equations of State II: Large Hierarchies and False Vacua cites this paper.

Gravitational Duals from Equations of State II: Large Hierarchies and False Vacua Hamiltonian Neural Networks

Reference 22

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arxiv_id, observed 2026-06-30T05:04:19.972396Z

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Observation 328a17f6-b5b5-4537-9ac9-98f9720e3ff4 · inbound

Chronos: A Physics-Informed Full-History Framework for Non-Markovian Long-Horizon Manipulation cites this paper.

Chronos: A Physics-Informed Full-History Framework for Non-Markovian Long-Horizon Manipulation Hamiltonian Neural Networks

Reference 58

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arxiv_id, observed 2026-06-30T15:04:46.761461Z

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Observation d9304c71-15a0-4bfd-bd42-02f89a2e425f · inbound

A Physics-Inspired Classical Digital Twin of Cortical Dynamics: A Band-Stratified Metriplectic Port-Hamiltonian Neural Network Learned from Brain-Computer-Interface EEG cites this paper.

A Physics-Inspired Classical Digital Twin of Cortical Dynamics: A Band-Stratified Metriplectic Port-Hamiltonian Neural Network Learned from Brain-Computer-Interface EEG Hamiltonian Neural Networks

Reference 3

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no resolver link, observed 2026-07-14T11:44:50.475874Z

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Observation 0d5efed6-b71a-49e9-a6cc-f7aaca4368ed · inbound

Quantum Port-Hamiltonian Neural Networks: Learning Conservative and Dissipative Dynamics via Measurement-Induced Nonlinearity cites this paper.

Quantum Port-Hamiltonian Neural Networks: Learning Conservative and Dissipative Dynamics via Measurement-Induced Nonlinearity Hamiltonian Neural Networks

Reference 8

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no resolver link, observed 2026-08-02T06:43:04.445320Z

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source=pdf_text observed=2026-08-02T06:43:04.445320Z digest=sha256:4ec2f2a2af5ad6ea30134fe351c4dcf6250b57454b987a5a83b1baef6ff5a754

Observation a9db7a47-42f0-44f5-8cf8-6d2b75c468f1 · inbound

Extrapolating the emergence of Hamiltonian chaos with random-feature Hamiltonian neural networks cites this paper.

Extrapolating the emergence of Hamiltonian chaos with random-feature Hamiltonian neural networks Hamiltonian Neural Networks

Reference 6

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no resolver link, observed 2026-08-03T16:16:47.900881Z

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source=pdf_text observed=2026-08-03T16:16:47.900881Z digest=sha256:aedf834695a62721837c824159aa09956b707abc96d00b9533d9830f0567f6f6

Observation 394c04b6-06bd-4075-9dd4-a17d91bec131 · inbound

Foundation Models for Astrophysics cites this paper.

Foundation Models for Astrophysics Hamiltonian Neural Networks

Reference 41

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source=pdf_text observed=2026-08-04T04:31:48.731648Z digest=sha256:bf5501ee71f9f1b2a03476ac02f8b68b4b4b2bf34a7653afb8d3029d1f12de53

Observation 7b44f51f-7a90-4125-8bd0-d73128b63d6c · inbound

A matched-integrator evaluation of Hamiltonian neural networks on pendulum and Kepler dynamics cites this paper.

A matched-integrator evaluation of Hamiltonian neural networks on pendulum and Kepler dynamics Hamiltonian Neural Networks

Reference 4

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