LabCompass

Hwancheol Jeong

Physics and Astronomy · Indiana University

Established · publishing since 1996

Publications

68

Citations

361

Est. group size

~1

Recurring co-author estimate

Active years

31

Publishing since 1996

Research summary
AI-generated

Hwancheol Jeong works in theoretical particle physics using lattice quantum chromodynamics (QCD), a computational method for simulating the strong force that binds quarks together. Much of the research focuses on calculating precise properties of subatomic particles—such as decays of B and D mesons and the muon's anomalous magnetic moment (muon g-2)—which are used to test the Standard Model of particle physics. The work also involves developing computational techniques and algorithms (including deep learning and eigensolvers) to make these large-scale simulations more efficient.

Lattice quantum chromodynamics (QCD) simulationsSemileptonic B- and D-meson decay form factorsMuon anomalous magnetic moment (g-2) calculationsNumerical methods and algorithms for lattice computationsDirac operator eigenvalue spectra and chiral symmetry

Publication activity has been steady and slightly growing over the past decade, averaging about five per year in recent years.

Generated by claude-opus-4-8 from public bibliographic data · Jul 9, 2026

In context
Among 1,320 established Physics and Astronomy PIs within our index
Citations: 361cohort median 4,840
h-index: 9cohort median 34
Publications / year (recent): 5.2cohort median 5.6

Typically publishes in teams of ~9 · 26% small-team papers (≤3 authors) · across 9 venues

Publication cadence
Publications per year over the last 10 years — averaging 5.2/year recently
2017: 2 publications172018: 2 publications18192020: 4 publications202021: 2 publications212022: 6 publications6222023: 5 publications232024: 4 publications242025: 5 publications252026: 6 publications626
Collaborators per year
Distinct co-authors at Indiana University each year — a rough indication of whether the group around this researcher has been growing or contracting. An estimate from co-authorship, not a roster: collaborators are not necessarily lab members, and recent years can be under-counted while indexing catches up.
2017: 0 collaborators at the same institution2018: 0 collaborators at the same institution2019: 0 collaborators at the same institution2020: 0 collaborators at the same institution2021: 0 collaborators at the same institution2022: 0 collaborators at the same institution2023: 0 collaborators at the same institution2024: 0 collaborators at the same institution2025: 9 collaborators at the same institution1719212325
Recent publications
Publishes in
  • arXiv (Cornell University)×15
  • Physical review. D/Physical review. D.×6
  • Proceedings of The 38th International Symposium on Lattice Field Theory — PoS(LATTICE2021)×3
  • Proceedings of The 33rd International Symposium on Lattice Field Theory — PoS(LATTICE 2015)×3
  • Physical Review Letters×2
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This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.

Last updated Sep 1, 2026.

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