Science Explorer Interactive view Map

T. Hayashi

T. Hayashi publishes mostly in Nuclear and High Energy Physics and Astronomy and Astrophysics, on topics such as Particle physics theoretical and experimental studies, High-Energy Particle Collisions Research and Particle Detector Development and Performance.

World rank
#323,286
of 1,633,909 ranked researchers
Rank in Poland
#3,002
of 21,787
Works
15
Citations
312
Citations per work
20.8

What does T. Hayashi research?

Nuclear and High Energy Physics: 90.5%Astronomy and Astrophysics: 9.5%90%top field
Nuclear and High Energy Physics90.5%Astronomy and Astrophysics9.5%

Shares of their own output, by the field each of their topics belongs to. The grey slice is everything not listed.

  1. 1Nuclear and High Energy Physics90% of their works
  2. 2Astronomy and Astrophysics10% of their works

Research topics

Which keywords describe T. Hayashi's research?

The keywords of their largest research topics: High-Energy Collider, Lattice QCD, Particle Physics, Heavy-Ion Collisions, Quark-Gluon Plasma, Particle Detectors, Silicon Detectors and charmonium.

Size is their works in the topics tagged with each word, from their 6 largest topics. Each links to the topic it comes from most.

All 13 words, with their numbers
  1. High-Energy Collider71 topic
  2. Lattice QCD72 topics
  3. Particle Physics71 topic
  4. Heavy-Ion Collisions51 topic
  5. Quark-Gluon Plasma51 topic
  6. Particle Detectors31 topic
  7. Silicon Detectors31 topic
  8. Cosmological Parameters21 topic
  9. Dark Energy21 topic
  10. Field Theories21 topic
  11. Holographic21 topic
  12. QCD21 topic
  13. charmonium21 topic

Where does T. Hayashi work?

T. Hayashi's main affiliation in the publication record is AGH University of Krakow, Poland.

How many publications and citations does T. Hayashi have?

Science Explorer counts 15 works and 312 citations for T. Hayashi, ranking #323,286 of 1,633,909 researchers worldwide on the composite score.

Ranked on field-normalised excellence (50%), output (30%) and citations (20%). Counts come from OpenAlex author records, which occasionally merge different people who share a name or split one person into several.

Other researchers named T. Hayashi

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