Publication | Open Access
Numerical Simulation of Magnetic Resonance Experiments: Concepts and Applications to Static, Rotating and Double Rotating Experiments
30
Citations
1
References
1994
Year
EngineeringSpin SystemsMagnetic ResonanceSimulationComputational ChemistryComputational MechanicsMagnetic Resonance ExperimentsSpin DynamicMagnetic FieldMagnetismMagnetic Resonance SpectraNuclear Quadrupole ResonanceElectron Paramagnetic ResonanceNumerical SimulationQuantum SimulationDouble Rotating ExperimentsNumerical ExperimentModeling And SimulationComputational ElectromagneticsBiophysicsPhysicsMagnetic MeasurementDouble RotationSpintronicsResonanceDouble ResonanceMedicineObject-oriented Programming Environment
Abstract An object-oriented programming environment for numerical simulation of magnetic resonance spectra is introduced and applied to NQR and NMR of quadrupolar nuclei. Using a Floquet approach it is possible to perform simulations of spin systems that are described by explicitly time-dependent Hamiltonians in full analogy to simulations of time-independent systems. Applications to magic angle spinning and double rotation are discussed.
| Year | Citations | |
|---|---|---|
Page 1
Page 1