The excitation and detection of multiple quantum transitions in systems of coupled spins offers, among other advantages, an increase in resolution over single quantum n.m.r. since the number of lines decreases as the order of the transition increases. This paper reviews the motivation for detecting multiple quantum transitions by a Fourier transform experiment and describes an experimental approach to high resolution multiple quantum spectra in dipolar systems along with results on some protonated liquid crystal systems. A simple operator formalism for the essential features of the time development is presented and some applications in progress are discussed
Multiple quantum-single quantum correlation experiments are employed for spectral simplification and...
Excitation of multiple quantum coherence in dipolar coupled spin systems is usually accomplished wit...
Nuclear magnetic resonance spectroscopy has demonstrated significant experimental progress toward th...
In Chapter 1 a variety of different introductory topics are presented. The potential complexity of t...
A three-dimensional multiple-quantum NMR experiment that produces individual spectra of all quantum ...
One of the significant advancements in Nuclear Magnetic Resonance spectroscopy (NMR) in combating th...
Use of dipolar and quadrupolar couplings for quantum information processing (QIP) by nuclear magneti...
Experimental and theoretical research conducted in two areas in the field of nuclear magnetic reson...
Experimental and theoretical research conducted in two areas in the field of nuclear magnetic resona...
The problem of extracting dipole couplings from a system of N spins I = 1/2 and one spin S by NMR te...
NMR spectra of molecules oriented in liquid-crystalline matrix provide information on the structure ...
AbstractThe NMR double-quantum response to a three-pulse sequence of dipolar coupled spin-1/2 pairs ...
NMR spectra of molecules oriented in liquid-crystalline matrix provide information on the structure ...
An NMR pulse sequence was used to study the signal features from intermolecular multiple-quantum coh...
The spectrum of 1,3-dichloro-2-ethenylbenzene partially oriented in nematic liquid crystalline solve...
Multiple quantum-single quantum correlation experiments are employed for spectral simplification and...
Excitation of multiple quantum coherence in dipolar coupled spin systems is usually accomplished wit...
Nuclear magnetic resonance spectroscopy has demonstrated significant experimental progress toward th...
In Chapter 1 a variety of different introductory topics are presented. The potential complexity of t...
A three-dimensional multiple-quantum NMR experiment that produces individual spectra of all quantum ...
One of the significant advancements in Nuclear Magnetic Resonance spectroscopy (NMR) in combating th...
Use of dipolar and quadrupolar couplings for quantum information processing (QIP) by nuclear magneti...
Experimental and theoretical research conducted in two areas in the field of nuclear magnetic reson...
Experimental and theoretical research conducted in two areas in the field of nuclear magnetic resona...
The problem of extracting dipole couplings from a system of N spins I = 1/2 and one spin S by NMR te...
NMR spectra of molecules oriented in liquid-crystalline matrix provide information on the structure ...
AbstractThe NMR double-quantum response to a three-pulse sequence of dipolar coupled spin-1/2 pairs ...
NMR spectra of molecules oriented in liquid-crystalline matrix provide information on the structure ...
An NMR pulse sequence was used to study the signal features from intermolecular multiple-quantum coh...
The spectrum of 1,3-dichloro-2-ethenylbenzene partially oriented in nematic liquid crystalline solve...
Multiple quantum-single quantum correlation experiments are employed for spectral simplification and...
Excitation of multiple quantum coherence in dipolar coupled spin systems is usually accomplished wit...
Nuclear magnetic resonance spectroscopy has demonstrated significant experimental progress toward th...