Published 2000 | Version v1
Book

The non-perturbative QCD potential

Creators

  • 1. Inst. fuer Theoretische Physik, Heidelberg (Germany)

Description

The potential between heavy quarks can be defined in a QCD effective field theories framework. It is discussed the situation when the coupling constant may not be considered small and provide an explicit expression for the potential valid up to order 1/m2. Spin dependent and spin independent terms are expressed in terms of Wilson loops, completing an ideal journey started twenty years ago with the classical work of Eichten and Feinberg

Abstract (Russian)

Потенциал между тяжелыми кварками может быть определен в рамках эффективных теорий поля КХД. Обсуждается ситуация, когда постоянная связи не может считаться малой, но может быть получено явное выражение для этого потенциала, справедливое до порядка 1/м2. Члены, зависящие и независящие от спина, выражаются через петли Вильсона, что завершает классическую работу Эйхтена и Фейнберга двадцатилетней давности
Part of:
Fundamental problems of high energy physics and field theory. Proceedings of the 23. Workshop on high energy physics and field theory

Additional details

Publishing Information

Publisher
State Research Centre of Russia Institute for High Energy Physics
Imprint Place
Protvino (Russian Federation)
ISBN
5-88738-038-1
Imprint Title
Fundamental problems of high energy physics and field theory. Proceedings of the 23. Workshop on high energy physics and field theory
Imprint Pagination
361 p.
Journal Page Range
p. 127-136

Conference

Title
23. Workshop on high energy physics and field theory
Dates
21-23 Jun 2000
Place
Protvino (Russian Federation)

INIS

Country of Publication
Russian Federation
Country of Input or Organization
Russian Federation
INIS RN
34085402
Subject category
S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
COUPLING CONSTANTS; NUCLEON-NUCLEON POTENTIAL; QUANTUM CHROMODYNAMICS; QUARKONIUM; QUARKS; SPIN; WILSON LOOP
Descriptors DEC
ANGULAR MOMENTUM; FERMIONS; FIELD THEORIES; PARTICLE PROPERTIES; POTENTIALS; QUANTUM FIELD THEORY

Optional Information

Notes
32 refs., 1 fig.