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Cornell potential

In particle physics, the Cornell potential is an effective method to account for the confinement of quarks in quantum chromodynamics (QCD). It was developed by Estia J. Eichten, Kurt Gottfried, Toichiro Kinoshita, John Kogut, Kenneth Lane and Tung-Mow Yan at Cornell University in the 1970s to explain the masses of quarkonium states and account for the…

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Overview

Short distance potential

Long distance potential

Domains of application

Calculation of the quark-quark potential

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Map overview Semantic statistics

Cornell potential

Nodes46
Edges45
Triples5
Avg. degree1.96
Density0.043478
Components1

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Cornell potential

Top relations

related to Calculation of the quark-quark potential · 2
Cornell potential → Cornell, QCD
related to Domains of application · 2
Cornell potential → Likewise, The Cornell
is a · 1
Cornell potential → effective method to account for the confinement of quarks in quantum chromodynamics

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Important terminology

potential displaystyle qcd cornell alpha sigma confinement quarkonium quarks frac color using effective account short also running hadron quark value

Entity relationships Subject–Predicate–Object triples

SubjectPredicateObjectConfidenceSrc
Cornell potentialis aeffective method to account for the confinement of quarks in quantum chromodynamics0.90text
Cornell potentialrelated to Calculation of the quark-quark potentialCornell0.60section
Cornell potentialrelated to Calculation of the quark-quark potentialQCD0.60section
Cornell potentialrelated to Domains of applicationThe Cornell0.60section
Cornell potentialrelated to Domains of applicationLikewise0.60section

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