Difference between revisions of "Dpfgse select.m"
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Based on Equation 3 from the paper by Stott et al. (https://doi.org/10.1006/jmre.1997.1110). The spatial coordinate is modelled explicitly. The function should be called via the [[imaging.m]] wrapper. | Based on Equation 3 from the paper by Stott et al. (https://doi.org/10.1006/jmre.1997.1110). The spatial coordinate is modelled explicitly. The function should be called via the [[imaging.m]] wrapper. | ||
| − | == | + | ==Parameters== |
parameters.rho0 - initial condition | parameters.rho0 - initial condition | ||
Revision as of 18:48, 5 June 2026
1D pulse-acquire NMR with DPFGSE signal selection.
Syntax
fid=dpfgse_select(spin_system,parameters,H,R,K,G,F)
Description
Based on Equation 3 from the paper by Stott et al. (https://doi.org/10.1006/jmre.1997.1110). The spatial coordinate is modelled explicitly. The function should be called via the imaging.m wrapper.
Parameters
parameters.rho0 - initial condition parameters.coil - detection state parameters.g_amp - amplitudes of the two gradients, T/m parameters.g_dur - gradient duration, seconds parameters.rf_frq_list - soft pulse parameters that will parameters.rf_amp_list be passed to shaped_pulse_af.m parameters.rf_dur_list function parameters.rf_phi parameters.pulse_rank parameters.sweep - detection sweep width, Hz parameters.npoints - number of points in the fid parameters.offset - transmitter and receiver offset, Hz
Outputs
fid - free induction decay of what is effectively a
1D pulse-acquire NMR experiment
Notes
At least a hundred points are required in the spatial dimension; increase until the answer stops changing.
See also
imaging.m, dpfgse_suppress.m, spencosy.m, spendosycosy.m
Version 2.1, authors: Ilya Kuprov, Pavan Lally, Ahmed Allami