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Hadronic processes with large transfer momenta and quark counting rules in multiparticle dual amplitude

Abstract

A dual N-particle amplitude satisfying the quark counting rules for the processes with large transfer momenta is constructed. The multiparticle channels are shown to give an essential contribution to the amplitude decreasing power in a hard kinematic limit. 19 refs.; 9 figs.
Publication Date:
Dec 31, 1989
Product Type:
Technical Report
Report Number:
ITP-89-76
Reference Number:
SCA: 662340; PA: AIX-23:037750; SN: 92000726557
Resource Relation:
Other Information: PBD: 1989
Subject:
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS; HADRON-HADRON INTERACTIONS; EXCHANGE INTERACTIONS; CIM MODEL; DUALITY; MANY-BODY PROBLEM; MOMENTUM TRANSFER; QUARKS; REGGE TRAJECTORIES; SCATTERING AMPLITUDES; 662340; HADRON INTERACTIONS
OSTI ID:
10140027
Research Organizations:
AN Ukrainskoj SSR, Kiev (Ukraine). Inst. Teoreticheskoj Fiziki
Country of Origin:
Ukraine
Language:
English
Other Identifying Numbers:
Other: ON: DE92627304; TRN: UA9200198037750
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
INIS
Size:
24 p.
Announcement Date:
Jul 05, 2005

Citation Formats

Akkelin, S V, Kobylinskij, N A, and Martynov, E S. Hadronic processes with large transfer momenta and quark counting rules in multiparticle dual amplitude. Ukraine: N. p., 1989. Web.
Akkelin, S V, Kobylinskij, N A, & Martynov, E S. Hadronic processes with large transfer momenta and quark counting rules in multiparticle dual amplitude. Ukraine.
Akkelin, S V, Kobylinskij, N A, and Martynov, E S. 1989. "Hadronic processes with large transfer momenta and quark counting rules in multiparticle dual amplitude." Ukraine.
@misc{etde_10140027,
title = {Hadronic processes with large transfer momenta and quark counting rules in multiparticle dual amplitude}
author = {Akkelin, S V, Kobylinskij, N A, and Martynov, E S}
abstractNote = {A dual N-particle amplitude satisfying the quark counting rules for the processes with large transfer momenta is constructed. The multiparticle channels are shown to give an essential contribution to the amplitude decreasing power in a hard kinematic limit. 19 refs.; 9 figs.}
place = {Ukraine}
year = {1989}
month = {Dec}
}