Difference between revisions of "Spencosy.m"
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Note: the last five parameters are built automatically by [[imaging.m]] context function when this sequence is called from that [[Kernel_contexts|context]]. | Note: the last five parameters are built automatically by [[imaging.m]] context function when this sequence is called from that [[Kernel_contexts|context]]. | ||
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| + | ==See also== | ||
| + | [[psycosy.m]], [[dpfgse_select.m]], [[dpfgse_suppress.m]], [[Built-in_experiments#Ultrafast,_pure-shift,_and_diffusion_NMR|Ultrafast, pure-shift, and diffusion NMR]] | ||
''Version 1.9, authors: [[Jean-Nicolas Dumez]], [[Ilya Kuprov]], [[Ludmilla Guduff]]'' | ''Version 1.9, authors: [[Jean-Nicolas Dumez]], [[Ilya Kuprov]], [[Ludmilla Guduff]]'' | ||
Revision as of 12:16, 25 April 2026
Ultrafast COSY pulse sequence. Syntax:
fid=spencosy(spin_system,parameters,H,R,K,G,F)
The following parameters are required
parameters.dims size of the sample in m
parameters.npts number of spin packets
parameters.spins nuclei on which the sequence runs
parameters.deltat timestep for acquisition
parameters.npoints number of acquired points for each
gradient readout
parameters.nloops number of loop, where each loop consists of
a positive and a negative readout
parameters.Ga acquisition gradient in T/m
parameters.pulsenpoints number of points in the pulse shape
parameters.nWURST smoothing factor for the pulse
parameters.Te duration of the pulse
parameters.BW bandwidth of the pulse
parameters.Ge encoding gradient in T/m
parameters.Gp coherence selection gradient in T/m
parameters.Tp duration of the coherence selection gradient
parameters.D diffusion constant, m^2/s
H Fokker-Planck Hamiltonian
R Fokker-Planck relaxation superoperator
K Fokker-Planck kinetics superoperator
G Fokker-Planck gradient superoperators
F Fokker-Planck diffusion and flow superoperator
Note: the last five parameters are built automatically by imaging.m context function when this sequence is called from that context.
See also
psycosy.m, dpfgse_select.m, dpfgse_suppress.m, Ultrafast, pure-shift, and diffusion NMR
Version 1.9, authors: Jean-Nicolas Dumez, Ilya Kuprov, Ludmilla Guduff