Published December 2002 | Version v1
Journal article

NMR signal shape two component system under the inhomogeneous magnetic field

  • 1. FGUP Moskovskij Radiotekhnicheskij Inst. RAN, Moscow (Russian Federation)

Description

Effect of heterogeneous magnetic field on mode of nuclear induction signals in two-component system of nuclear spins is analyzed. Four commonly occurring distributions of magnetic field are considered: Lorentz, Gauss, exponential, pulsed ones. Two-component systems without and with exchange of magnetization between components are researched. In cases of no transfer and fast exchange the extensions of n-component system is performed

Abstract (Russian)

Анализируется влияние неоднородного магнитного поля на форму сигналов ядерной индукции в двухкомпонентной системе ядерных спинов. Рассмотрены четыре часто встречающиеся распределения магнитного поля: лоренцево, гауссово, экспоненциальное и импульсное. Исследуются двухкомпонентные системы без обмена и с обменом намагниченности между компонентами. В случаях отсутствия переноса и при быстром обмене даны обобщения на n-компонентную систему

Additional details

Additional titles

Original title (Russian)
Форма сигнала YaMR двухкомпонентной системы в неоднородном поле

Publishing Information

Journal Title
Atomnaya Ehnergiya
Journal Volume
93
Journal Issue
6
Journal Page Range
p. 468-471
ISSN
0004-7163
CODEN
AENGAB

Conference

Title
18. Russian particle accelerator conference RuPAC-2002
Original Conference Title
18. Rossijskaya konferentsiya po uskoritelyam zaryazhennykh chastits
Dates
Oct 2002
Place
Obninsk (Russian Federation)

INIS

Country of Publication
Russian Federation
Country of Input or Organization
Russian Federation
INIS RN
35027821
Subject category
S43: PARTICLE ACCELERATORS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ACCELERATION; ACCELERATOR FACILITIES; GAUSS FUNCTION; INDUCTION; LORENTZ FORCE; MAGNETIC FIELDS; MAGNETIZATION; NUCLEAR MAGNETIC RESONANCE; PULSE SHAPERS; SIGNAL CONDITIONING
Descriptors DEC
ELECTRONIC CIRCUITS; FUNCTIONS; MAGNETIC RESONANCE; PULSE CIRCUITS; RESONANCE; SIGNAL CONDITIONERS

Optional Information

Notes
7 refs.