Difference between revisions of "Hetcor.m"
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| − | [[cosy.m]], [[noesy.m]], [[hsqc.m]], [[hmqc.m]], [[hnco.m]], [[hncoca.m]], [[noesyhsqc.m]] | + | [[cosy.m]], [[noesy.m]], [[hsqc.m]], [[hmqc.m]], [[hnco.m]], [[hncoca.m]], [[noesyhsqc.m]], [[dilute.m]], [[clip_hsqc.m]], [[coloc.m]], [[crazed.m]], [[ct_cosy.m]], [[ct_hsqc.m]], [[dept.m]], [[deptq.m]], [[dqf_cosy.m]], [[ecosy.m]], [[hmbc.m]], [[hoesy.m]], [[inadequate.m]], [[inadequate_2d.m]], [[inept.m]], [[inv_rec.m]], [[mqs.m]], [[mqs_refocus.m]], [[pansy_cosy.m]], [[pansy_triple.m]], [[roesy.m]], [[sat_rec.m]], [[tocsy.m]], [[Built-in_experiments]] |
''Version 2.3, authors: [[Ilya Kuprov]]'' | ''Version 2.3, authors: [[Ilya Kuprov]]'' | ||
Latest revision as of 19:37, 6 June 2026
Magnitude-mode HETCOR pulse sequence.
Syntax
fid=hetcor(spin_system,parameters,H,R,K)
Parameters
parameters.sweep [F1 F2] sweep widths in the
two frequency directions, Hz
parameters.npoints [F1 F2] numbers of points in
the two time directions in fid
parameters.spins {F1 F2} nuclei (e.g. {'1H','13C'})
parameters.decouple list of nuclei that detection
time decoupling should be applied
to - cell array of strings, e.g.
{'1H','15N'})
parameters.J working scalar coupling, Hz
H - Hamiltonian matrix, received from context function
R - relaxation superoperator, received from context function
K - kinetics superoperator, received from context function
Outputs
fid - two-dimensional free induction decay for magnitude-
mode processing
Examples
A HETCOR spectrum of strychnine (examples/nmr_liquids/hetcor_strychnine.m) appears below.
Notes
Natural abundance experiments should make use of the isotope dilution functionality. See dilute.m function.
See also
cosy.m, noesy.m, hsqc.m, hmqc.m, hnco.m, hncoca.m, noesyhsqc.m, dilute.m, clip_hsqc.m, coloc.m, crazed.m, ct_cosy.m, ct_hsqc.m, dept.m, deptq.m, dqf_cosy.m, ecosy.m, hmbc.m, hoesy.m, inadequate.m, inadequate_2d.m, inept.m, inv_rec.m, mqs.m, mqs_refocus.m, pansy_cosy.m, pansy_triple.m, roesy.m, sat_rec.m, tocsy.m, Built-in_experiments
Version 2.3, authors: Ilya Kuprov
