A method is implemented to perform "fast" adiabatic variation of the spin Hamiltonian by imposing the constant adiabaticity condition. The method is applied to improve the performance of singlet-state Nuclear Magnetic Resonance (NMR) experiments, specifically, for efficient generation and readout of the singlet spin order in coupled spin pairs by applying adiabatically ramped RF-fields. Test experiments have been performed on a specially designed molecule having two strongly coupled C-13 spins and on selectively isotopically labelled glycerol having two pairs of coupled protons. Optimized RF-ramps show improved performance in comparison, for example, to linear ramps. We expect that the methods described here are useful, not only for singlet...
Adiabatic demagnetization and remagnetization in the rotating frame (ADRF and ARRF) are shown to be ...
High-performance quantum information processing requires efficient control of undesired decohering e...
We report pulse sequences for the sensitivity enhancement of magic-angle spinning and multiple-quant...
A method is implemented to perform “fast” adiabatic variation of the spin Hamiltonian by imposing th...
We describe an NMR method to generate singlet order in spin pairs from longitudinal spin magnetizati...
Adiabatic pulses are amplitude- and frequency-modulated pulses that are insensitive to the effects o...
Sensitivity is a signature problem of NMR. In its most basic description, an NMR experiment involves...
A method is proposed to create Long-Lived spin States (LLSs) from longitudinal spin magnetization, w...
Adiabatic radio frequency (RF) pulses are in widespread use in biomedical magnetic resonance imaging...
Hyperpolarized nuclear states provide NMR signals enhanced by many orders of magnitude, with numerou...
Nuclear singlet states may have lifetimes that are much longer than the conventional relaxation time...
Nuclear singlet states may display lifetimes that are an order of magnitude greater than conventiona...
Numerical optimizations of solid-state nuclear magnetic resonance experiments are one of the possibl...
Frequency modulation method for performing adiabatic demagnetization in the rotating reference frame...
NMR implementation of adiabatic algorithms face severe problems in homonuclear spin systems since th...
Adiabatic demagnetization and remagnetization in the rotating frame (ADRF and ARRF) are shown to be ...
High-performance quantum information processing requires efficient control of undesired decohering e...
We report pulse sequences for the sensitivity enhancement of magic-angle spinning and multiple-quant...
A method is implemented to perform “fast” adiabatic variation of the spin Hamiltonian by imposing th...
We describe an NMR method to generate singlet order in spin pairs from longitudinal spin magnetizati...
Adiabatic pulses are amplitude- and frequency-modulated pulses that are insensitive to the effects o...
Sensitivity is a signature problem of NMR. In its most basic description, an NMR experiment involves...
A method is proposed to create Long-Lived spin States (LLSs) from longitudinal spin magnetization, w...
Adiabatic radio frequency (RF) pulses are in widespread use in biomedical magnetic resonance imaging...
Hyperpolarized nuclear states provide NMR signals enhanced by many orders of magnitude, with numerou...
Nuclear singlet states may have lifetimes that are much longer than the conventional relaxation time...
Nuclear singlet states may display lifetimes that are an order of magnitude greater than conventiona...
Numerical optimizations of solid-state nuclear magnetic resonance experiments are one of the possibl...
Frequency modulation method for performing adiabatic demagnetization in the rotating reference frame...
NMR implementation of adiabatic algorithms face severe problems in homonuclear spin systems since th...
Adiabatic demagnetization and remagnetization in the rotating frame (ADRF and ARRF) are shown to be ...
High-performance quantum information processing requires efficient control of undesired decohering e...
We report pulse sequences for the sensitivity enhancement of magic-angle spinning and multiple-quant...