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Paper Citation Record · LEDGER

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture

As of 13 August 2026, this Paper Citation Record lists 29 of 29 outbound references and 5 inbound Pith citation observations for arXiv:2412.05333.

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

pith.paper-citation-record.v1
2412.05333 v1

Coverage vector

measured 29 of 29 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-11T21:28:22.624141Z

measured 34 of 34 standing notices

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measured 5 of 5 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-11T15:47:54.613627Z

measured 0 of 1 external citation measurements

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Source: arxiv_reference, observed 2026-05-23T07:25:28.699050Z

Reference resolution

29 of 29 outbound references displayed

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Outbound references

Observation f3554ffc-965c-49d7-9f3c-118fabc54bc9 · outbound

This paper cites Fast inference of deep neural networks in FPGAs for particle physics.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Fast inference of deep neural networks in FPGAs for particle physics

Reference 1

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Observation 0ce89afa-b836-4cb3-a667-54056435d253 · outbound

This paper cites The Phase-2 upgrade of the CMS Level-1 trigger.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture The Phase-2 upgrade of the CMS Level-1 trigger

Reference 2

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Observation b314167e-d74a-40a1-900e-a03294707d0c · outbound

This paper cites GNN-based end-to-end reconstruction in the CMS Phase 2 High-Granularity Calorimeter.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture GNN-based end-to-end reconstruction in the CMS Phase 2 High-Granularity Calorimeter

Reference 3

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Observation ab1acef6-4e29-4049-9f7f-31a57c1ed076 · outbound

This paper cites MLPF: Efficient machine-learned particle-flow reconstruction using graph neural networks.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture MLPF: Efficient machine-learned particle-flow reconstruction using graph neural networks

Reference 4

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Observation 34dcd154-4eee-4e5f-b934-eb3d1c6f4095 · outbound

This paper cites Interaction networks for the identification of boosted $H\to b\overline{b}$ decays.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Interaction networks for the identification of boosted $H\to b\overline{b}$ decays

Reference 5

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Observation 92e9eee1-8bf1-4c2f-8d1f-bdd0fa28217f · outbound

This paper cites ParticleNet: Jet Tagging via Particle Clouds.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture ParticleNet: Jet Tagging via Particle Clouds

Reference 6

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Observation bd1d57af-7ab8-4f43-aba5-4d1160a0e527 · outbound

This paper cites Particle Transformer for Jet Tagging.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Particle Transformer for Jet Tagging

Reference 7

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Observation 41160eb5-c914-4797-981b-c2c34fb9e7ba · outbound

This paper cites Self-Supervised Learning from Images with a Joint-Embedding Predictive Architecture.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Self-Supervised Learning from Images with a Joint-Embedding Predictive Architecture

Reference 8

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Observation abe5e337-1656-4d1d-9366-13bf7dc40dc1 · outbound

This paper cites Masked autoencoders are scalable vision learners.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Masked autoencoders are scalable vision learners

Reference 9

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Observation bc6275d6-06e3-4099-817a-4527bd295a88 · outbound

This paper cites Symmetries, Safety, and Self-Supervision.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Symmetries, Safety, and Self-Supervision

Reference 10

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Observation e25ab325-7813-4b0d-af30-ea7ac20b7ecb · outbound

This paper cites Re-Simulation-based Self-Supervised Learning for Pre-Training Foundation Models.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Re-Simulation-based Self-Supervised Learning for Pre-Training Foundation Models

Reference 11

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Observation 7a090183-763d-4433-8b48-c6397dcf47ba · outbound

This paper cites Masked Particle Modeling on Sets: Towards Self-Supervised High Energy Physics Foundation Models.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Masked Particle Modeling on Sets: Towards Self-Supervised High Energy Physics Foundation Models

Reference 12

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Observation 5e7b8f44-4365-4c16-8055-d2109c0e6bee · outbound

This paper cites Is Tokenization Needed for Masked Particle Modelling?.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Is Tokenization Needed for Masked Particle Modelling?

Reference 13

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Observation 34933c32-c9a5-4c1b-b52d-431160b04f32 · outbound

This paper cites OmniJet-$\alpha$: The first cross-task foundation model for particle physics.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture OmniJet-$\alpha$: The first cross-task foundation model for particle physics

Reference 14

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Observation 8e61eede-1989-4225-8044-8cdff65b415a · outbound

This paper cites Large-Scale Pretraining and Finetuning for Efficient Jet Classification in Particle Physics.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Large-Scale Pretraining and Finetuning for Efficient Jet Classification in Particle Physics

Reference 15

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Observation 67e6679d-e6bf-4cf3-9313-2733de399c15 · outbound

This paper cites ucsd-hep-ex/j-jepa: v0.1.0.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture ucsd-hep-ex/j-jepa: v0.1.0

Reference 16

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Observation 9fece828-99a5-4f5d-9fe9-9e8cf122c374 · outbound

This paper cites The anti-k_t jet clustering algorithm.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture The anti-k_t jet clustering algorithm

Reference 17

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Observation 03977512-8d36-4fa5-a57a-a7d795c53c8d · outbound

This paper cites Better Jet Clustering Algorithms.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Better Jet Clustering Algorithms

Reference 18

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Observation 67f369ed-9122-4372-a808-0cc8847ceee7 · outbound

This paper cites Hadronization Corrections to Jet Cross Sections in Deep-Inelastic Scattering.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Hadronization Corrections to Jet Cross Sections in Deep-Inelastic Scattering

Reference 19

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Observation 12326362-eb08-47c6-8b2e-814a46dd6b6b · outbound

This paper cites FastJet user manual.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture FastJet user manual

Reference 20

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Observation 46b88abb-1942-42f0-9e3c-bf6eb34c162c · outbound

This paper cites An array-oriented Python interface for FastJet.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture An array-oriented Python interface for FastJet

Reference 21

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Observation 50211a1c-9469-490a-8944-3caec5422422 · outbound

This paper cites Emerging properties in self-supervised vision transformers.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Emerging properties in self-supervised vision transformers

Reference 22

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Observation fd632f8e-6841-4410-9281-cb7782152e78 · outbound

This paper cites An Image is Worth 16x16 Words: Transformers for Image Recognition at Scale.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture An Image is Worth 16x16 Words: Transformers for Image Recognition at Scale

Reference 23

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Observation b63af4b2-ef12-4f8a-9149-164a3ab7589e · outbound

This paper cites Gaussian Error Linear Units (GELUs).

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Gaussian Error Linear Units (GELUs)

Reference 24

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This paper cites Going deeper with Image Transformers.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Going deeper with Image Transformers

Reference 25

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This paper cites JetClass: A Large-Scale Dataset for Deep Learning in Jet Physics.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture JetClass: A Large-Scale Dataset for Deep Learning in Jet Physics

Reference 26

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This paper cites Top quark tagging reference dataset (v0 (2018_03_27)).

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Top quark tagging reference dataset (v0 (2018_03_27))

Reference 27

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Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Unresolved cited work

Reference 28

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This paper cites Masked Autoencoders Are Scalable Vision Learners.

Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture Masked Autoencoders Are Scalable Vision Learners

Reference 2022

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Pith citing papers

Observation 185b7db7-a7cf-481e-a984-54a7d66528e6 · inbound

Pretrained Event Classification Model for High Energy Physics Analysis cites this paper.

Pretrained Event Classification Model for High Energy Physics Analysis Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture

Reference 11

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Pretrained Event Classification Model for High Energy Physics Analysis cites this paper.

Pretrained Event Classification Model for High Energy Physics Analysis Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture

Reference 11

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Enhancing next token prediction based pre-training for jet foundation models cites this paper.

Enhancing next token prediction based pre-training for jet foundation models Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture

Reference 9

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Observation 9f9b035c-d8b8-487d-92ec-ad65a68a2c50 · inbound

Discovering the Gell-Mann-Okubo Formula with Kolmogorov-Arnold Networks cites this paper.

Discovering the Gell-Mann-Okubo Formula with Kolmogorov-Arnold Networks Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture

Reference 58

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Observation 98cdccbe-5a0d-4c9c-b433-79bc155b89b9 · inbound

AeroJEPA: Learning Semantic Latent Representations for Scalable 3D Aerodynamic Field Modeling cites this paper.

AeroJEPA: Learning Semantic Latent Representations for Scalable 3D Aerodynamic Field Modeling Learning Symmetry-Independent Jet Representations via Jet-Based Joint Embedding Predictive Architecture

Reference 23

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