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Nuclear magnetic quadrupole moments in single-particle approximation

Abstract

Static magnetic quadrupole moment of a nucleus, induced by T- and P-odd nucleon-nucleon interaction, is investigated in the single-particle approximation. Models are considered allowing for analytical solution. The problem is also treated numerically in a Woods-Saxon potential with spin-orbit interaction. The stability of results is discussed. 11 refs., 1 fig., 1 tab.
Publication Date:
Dec 31, 1994
Product Type:
Technical Report
Report Number:
BUDKERINP-94-47
Reference Number:
SCA: 663110; PA: AIX-26:012972; EDB-95:032472; SN: 95001325121
Resource Relation:
Other Information: PBD: 1994
Subject:
73 NUCLEAR PHYSICS AND RADIATION PHYSICS; NUCLEON-NUCLEON INTERACTIONS; NUCLEAR MAGNETIC MOMENTS; QUADRUPOLE MOMENTS; ANALYTICAL SOLUTION; L-S COUPLING; NUMERICAL SOLUTION; P INVARIANCE; SINGLE-PARTICLE MODES; T INVARIANCE; WOODS-SAXON POTENTIAL; 663110; GENERAL AND AVERAGE PROPERTIES OF NUCLEI AND NUCLEAR ENERGY LEVELS
OSTI ID:
10112649
Research Organizations:
AN SSSR, Novosibirsk (Russian Federation). Inst. Yadernoj Fiziki
Country of Origin:
Russian Federation
Language:
English
Other Identifying Numbers:
Other: ON: DE95613845; TRN: RU9405194012972
Availability:
OSTI; NTIS (US Sales Only); INIS
Submitting Site:
INIS
Size:
11 p.
Announcement Date:
Jun 30, 2005

Citation Formats

Dmitriev, V F, Khriplovich, I B, and Telitsin, V B. Nuclear magnetic quadrupole moments in single-particle approximation. Russian Federation: N. p., 1994. Web.
Dmitriev, V F, Khriplovich, I B, & Telitsin, V B. Nuclear magnetic quadrupole moments in single-particle approximation. Russian Federation.
Dmitriev, V F, Khriplovich, I B, and Telitsin, V B. 1994. "Nuclear magnetic quadrupole moments in single-particle approximation." Russian Federation.
@misc{etde_10112649,
title = {Nuclear magnetic quadrupole moments in single-particle approximation}
author = {Dmitriev, V F, Khriplovich, I B, and Telitsin, V B}
abstractNote = {Static magnetic quadrupole moment of a nucleus, induced by T- and P-odd nucleon-nucleon interaction, is investigated in the single-particle approximation. Models are considered allowing for analytical solution. The problem is also treated numerically in a Woods-Saxon potential with spin-orbit interaction. The stability of results is discussed. 11 refs., 1 fig., 1 tab.}
place = {Russian Federation}
year = {1994}
month = {Dec}
}