The heteronuclear cross-polarization efficiency in the rotating frame can be improved by sweeping the radiofrequency amplitude adiabatically through the Hartmann-Hahn condition. The enhancement is particularly significant for strongly coupled IS spin systems with weak dipolar coupling to extraneous spins. A good approxn. to an adiabatic transfer is obtained with a tangential time dependence of the radiofrequency field amplitude whereby transient oscillations are efficiently suppressed. [on SciFinder (R)
A method is implemented to perform "fast" adiabatic variation of the spin Hamiltonian by imposing th...
A new type of spin chemical experiment is suggested which utilizes adiabatic reversion of a low magn...
Level anticrossings (LACs) are ubiquitous in quantum systems and have been exploited for spin-order ...
Two novel schemes are described for cross polarization in NMR that make it possible to achieve an ef...
A method is proposed to transfer spin order from <i>para</i>-hydrogen, that is, the H<sub>2</sub> mo...
Cross-polarization of nuclei (I) with a low magnetogyric ratio is one of the pillars of many modern ...
We propose a technique for transferring the multiplet spin polarization (CIDNP or PHIP, or one creat...
Depolarization from an intrinsic spin resonance can be avoided by adiabatically exciting a coherent ...
We investigate spin thermodynamic processes taking place during Hartmann–Hahn cross-polarization exp...
A method for precise manipulation of non-thermal nuclear spin polarization by switching a RF-field i...
In two influential paper, Ernst and coworkers argued that cross-polarization, originally proposed by...
Spin hyperpolarization can be coherently transferred to other nuclei in field-cycling NMR experiment...
Peculiar nuclear spin systems can be polarized at a level of thousands times the value obtained at t...
The polarization of electronic spins S is transferred to nuclear spins / by cross relaxation in an e...
Nuclear spin hyperpolarization is an important resource for increasing the sensitivity of NMR spectr...
A method is implemented to perform "fast" adiabatic variation of the spin Hamiltonian by imposing th...
A new type of spin chemical experiment is suggested which utilizes adiabatic reversion of a low magn...
Level anticrossings (LACs) are ubiquitous in quantum systems and have been exploited for spin-order ...
Two novel schemes are described for cross polarization in NMR that make it possible to achieve an ef...
A method is proposed to transfer spin order from <i>para</i>-hydrogen, that is, the H<sub>2</sub> mo...
Cross-polarization of nuclei (I) with a low magnetogyric ratio is one of the pillars of many modern ...
We propose a technique for transferring the multiplet spin polarization (CIDNP or PHIP, or one creat...
Depolarization from an intrinsic spin resonance can be avoided by adiabatically exciting a coherent ...
We investigate spin thermodynamic processes taking place during Hartmann–Hahn cross-polarization exp...
A method for precise manipulation of non-thermal nuclear spin polarization by switching a RF-field i...
In two influential paper, Ernst and coworkers argued that cross-polarization, originally proposed by...
Spin hyperpolarization can be coherently transferred to other nuclei in field-cycling NMR experiment...
Peculiar nuclear spin systems can be polarized at a level of thousands times the value obtained at t...
The polarization of electronic spins S is transferred to nuclear spins / by cross relaxation in an e...
Nuclear spin hyperpolarization is an important resource for increasing the sensitivity of NMR spectr...
A method is implemented to perform "fast" adiabatic variation of the spin Hamiltonian by imposing th...
A new type of spin chemical experiment is suggested which utilizes adiabatic reversion of a low magn...
Level anticrossings (LACs) are ubiquitous in quantum systems and have been exploited for spin-order ...