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Paper Citation Record · LEDGER

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays

As of 13 August 2026, this Paper Citation Record lists 60 of 60 outbound references and 0 inbound Pith citation observations for arXiv:2411.10539.

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

pith.paper-citation-record.v1
2411.10539 v1

Coverage vector

measured 60 of 60 reference resolution

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60 of 60 outbound references displayed

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Outbound references

Observation 6b1af75b-2cb0-4f68-97e5-075780410626 · outbound

This paper cites Navas et al.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Navas et al

Reference 1

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Observation 2a24e5c5-7631-4c62-83a3-1e6468bcd695 · outbound

This paper cites Aaboud et al., Observation of H → b¯b decays and V H production with the ATLAS detector, Phys.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Aaboud et al., Observation of H → b¯b decays and V H production with the ATLAS detector, Phys

Reference 2

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Observation 9b854b1b-03d7-4ec6-b476-e2369cf0ca38 · outbound

This paper cites Observation of Higgs boson decay to bottom quarks.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Observation of Higgs boson decay to bottom quarks

Reference 3

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Observation edec7f4b-1387-45e2-9d7b-676c682df491 · outbound

This paper cites Jet Substructure at the Large Hadron Collider: A Review of Recent Advances in Theory and Machine Learning.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Jet Substructure at the Large Hadron Collider: A Review of Recent Advances in Theory and Machine Learning

Reference 4

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Observation fabcac23-2d59-42a7-8932-65dd12b542bb · outbound

This paper cites Jet Substructure at the Large Hadron Collider: Experimental Review.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Jet Substructure at the Large Hadron Collider: Experimental Review

Reference 5

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Observation daa50ce8-d237-4725-aa8c-1b4fb91e82b6 · outbound

This paper cites Deep Learning and its Application to LHC Physics.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Deep Learning and its Application to LHC Physics

Reference 6

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Observation 17af798c-e04d-4854-8e09-d22881635626 · outbound

This paper cites Machine Learning in High Energy Physics Community White Paper.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Machine Learning in High Energy Physics Community White Paper

Reference 7

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Observation 9905bdb3-9304-4adb-bf6d-7d21939d5e1a · outbound

This paper cites Radovic, M.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Radovic, M

Reference 8

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This paper cites Machine learning and the physical sciences.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Machine learning and the physical sciences

Reference 9

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This paper cites Machine and Deep Learning Applications in Particle Physics.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Machine and Deep Learning Applications in Particle Physics

Reference 10

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Observation 382c7cde-f928-44e0-83e6-3e9496d5aa8d · outbound

This paper cites Modern Machine Learning and Particle Physics.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Modern Machine Learning and Particle Physics

Reference 11

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This paper cites Machine Learning in the Search for New Fundamental Physics.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Machine Learning in the Search for New Fundamental Physics

Reference 12

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Observation a5d7a963-314b-466e-9dc2-29415ac784ff · outbound

This paper cites Machine Learning in Nuclear Physics.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Machine Learning in Nuclear Physics

Reference 13

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This paper cites Snowmass 2021 Computational Frontier CompF03 Topical Group Report: Machine Learning.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Snowmass 2021 Computational Frontier CompF03 Topical Group Report: Machine Learning

Reference 14

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This paper cites Modern Machine Learning for LHC Physicists.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Modern Machine Learning for LHC Physicists

Reference 15

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Observation 87c86fdb-0660-49d5-83b0-db0e23580d4c · outbound

This paper cites Nachmanet al., Jets and Jet Substructure at Future Colliders, Front.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Nachmanet al., Jets and Jet Substructure at Future Colliders, Front

Reference 16

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Observation 5fa6824f-eb00-4a53-9725-96377dfccb34 · outbound

This paper cites DeZoort, P.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays DeZoort, P

Reference 17

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Unresolved cited work

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This paper cites Belis, P.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Belis, P

Reference 19

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This paper cites Machine Learning in High Energy Physics: A review of heavy-flavor jet tagging at the LHC.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Machine Learning in High Energy Physics: A review of heavy-flavor jet tagging at the LHC

Reference 20

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays A Living Review of Machine Learning for Particle Physics

Reference 21

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays QCD Masterclass Lectures on Jet Physics and Machine Learning

Reference 22

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays TASI Lectures on Physics for Machine Learning

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Neyman and E

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Altarelli and G

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Learning New Physics from a Machine

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Anomaly Detection for Resonant New Physics with Machine Learning

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays QCD or What?

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays A generic anti-QCD jet tagger

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Novelty Detection Meets Collider Physics

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations

Reference 35

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays A comprehensive guide to the physics and usage of PYTHIA 8.3

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays FastJet user manual

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Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays The anti-k_t jet clustering algorithm

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Observation a92725d5-8ef2-42cb-ba1a-54666fd3ff7c · outbound

This paper cites Soft Drop.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Soft Drop

Reference 39

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Observation b4baac23-79ac-4a7c-bd77-68acd6cfeffd · outbound

This paper cites Sudakov Safety in Perturbative QCD.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Sudakov Safety in Perturbative QCD

Reference 40

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Observation 8527d067-2286-4ef4-bc65-21154838a5a2 · outbound

This paper cites Unsafe but Calculable: Ratios of Angularities in Perturbative QCD.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Unsafe but Calculable: Ratios of Angularities in Perturbative QCD

Reference 41

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Observation c60b2eef-d983-43a0-aa62-7e6d8dabe9ad · outbound

This paper cites an unresolved cited work.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Unresolved cited work

Reference 42

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Observation 5a0b1066-379e-409e-8225-1bd0cf7eb303 · outbound

This paper cites Jet Shapes in Hadron Collisions: Higher Orders, Resummation and Hadronization.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Jet Shapes in Hadron Collisions: Higher Orders, Resummation and Hadronization

Reference 43

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Observation 786ed772-c308-4c59-8dc8-8e7b76555a8e · outbound

This paper cites an unresolved cited work.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Unresolved cited work

Reference 44

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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 d17f09c8-1058-4318-a062-a2a93769fec8 · outbound

This paper cites Catani, Y.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Catani, Y

Reference 45

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Observation 3435ae1d-c0d6-4af0-84db-537d9deec6b7 · outbound

This paper cites Jet Observables Without Jet Algorithms.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Jet Observables Without Jet Algorithms

Reference 46

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Observation 49c01446-0965-473a-b6e6-133cca0fb7a5 · outbound

This paper cites Jet Shapes with the Broadening Axis.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Jet Shapes with the Broadening Axis

Reference 47

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Observation 6c322463-297c-4fc5-b895-047f30837ac7 · outbound

This paper cites Salam, E∞ Scheme, unpublished.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Salam, E∞ Scheme, unpublished

Reference 48

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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 b32fb64e-1d11-4a69-9015-749efef439d0 · outbound

This paper cites Binary Discrimination Through Next-to-Leading Order.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Binary Discrimination Through Next-to-Leading Order

Reference 49

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Observation 4d04897a-7613-44b2-aa61-bc24776be15c · outbound

This paper cites an unresolved cited work.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Unresolved cited work

Reference 50

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Observation a943d808-08cd-4d7c-b7df-f384afbab278 · outbound

This paper cites Weinberg, Infrared photons and gravitons , Phys.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Weinberg, Infrared photons and gravitons , Phys

Reference 51

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Observation 53e7d783-1065-4f63-b22d-2f62163d641c · outbound

This paper cites an unresolved cited work.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Unresolved cited work

Reference 52

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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 90d66374-18c6-4ba0-a442-077a070dbaea · outbound

This paper cites Bassetto, M.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Bassetto, M

Reference 53

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Observation 9f3981e5-9b03-4951-8803-d913d2287c13 · outbound

This paper cites an unresolved cited work.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Unresolved cited work

Reference 54

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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 3ca79283-3bf3-4de8-9d86-d1e4c87abacd · outbound

This paper cites Catani and M.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Catani and M

Reference 55

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Observation ac9cdef3-520f-4598-89d6-a2680befd1ef · outbound

This paper cites An Optimal Observable for Color Singlet Identification.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays An Optimal Observable for Color Singlet Identification

Reference 56

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Observation a3f73924-cbeb-4ef6-9811-6385c99ba725 · outbound

This paper cites Systematic Interpretability and the Likelihood for Boosted Top Quark Identification.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Systematic Interpretability and the Likelihood for Boosted Top Quark Identification

Reference 57

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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 c6ad7c36-36c6-4787-b2f2-2f6369f42694 · outbound

This paper cites Power Counting to Better Jet Observables.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Power Counting to Better Jet Observables

Reference 58

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Observation 86cb6c5f-5499-4672-9efb-7241503f5a24 · outbound

This paper cites Energy Correlation Functions for Jet Substructure.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays Energy Correlation Functions for Jet Substructure

Reference 59

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Observation 950cb6d6-abf3-4526-9cd9-c860e5b07ecf · outbound

This paper cites The Fundamental Limit of Jet Tagging.

Systematically Constructing the Likelihood for Boosted $H\to gg$ Decays The Fundamental Limit of Jet Tagging

Reference 60

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