ct_hsqc.m

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Constant-time phase-sensitive HSQC pulse sequence.

Syntax

    fid=ct_hsqc(spin_system,parameters,H,R,K)

Parameters

    parameters.sweep              [F1 F2] sweep widths, Hz

    parameters.npoints            [F1 F2] numbers of points

    parameters.spins              {F1 F2} nuclei (e.g. '13C','1H')

    parameters.decouple_f2        nuclei to decouple in F2, e.g. 
                                  {'15N','13C'}

    parameters.decouple_f1        nuclei to decouple in F1, e.g. 
                                  {'1H','13C'}

    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.pos,fid.neg -  two components of the States quadrature 
                       signal.

Examples

Below is the output of examples/nmr_liquids/ct_hsqc_strychnine.m example file.

Ct hsqc strychnine.png

Notes

Natural abundance simulations should make use of the isotope dilution functionality. See dilute.m function.

See also

dilute.m, clip_hsqc.m, coloc.m, cosy.m, crazed.m, ct_cosy.m, dept.m, deptq.m, dqf_cosy.m, ecosy.m, hetcor.m, hmbc.m, hmqc.m, hoesy.m, hsqc.m, inadequate.m, inadequate_2d.m, inept.m, inv_rec.m, mqs.m, mqs_refocus.m, noesy.m, pansy_cosy.m, pansy_triple.m, roesy.m, sat_rec.m, tocsy.m, Built-in_experiments

Version 2.5, authors: Matt Walker, Ilya Kuprov