Difference between revisions of "Pansy triple.m"

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Below is the output of the triple-channel PANSY example file (examples/nmr_liquids/pansy_triple_ch.m) for the 13C natural abundance glycine:
 
Below is the output of the triple-channel PANSY example file (examples/nmr_liquids/pansy_triple_ch.m) for the 13C natural abundance glycine:
  
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[File:pansy_triple_ch.png]
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[[File:pansy_triple_ch.png]]
  
 
==Notes==
 
==Notes==

Revision as of 15:57, 1 November 2022

Triple-channel PANSY pulse sequence from Figure 1 in the paper by Kupce, Freeman, and John (https://dx.doi.org/10.1021/ja0634876).

Syntax

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

Arguments

   parameters.spins   - three nuclei on which the sequence 
                        runs, e.g. {'1H','13C','15N'}

   parameters.sweep   - a vector with three sweep widths
                        in Hz

   parameters.npoints - a vector of three integers specify-
                        ing point count in each dimension

   H - Hamiltonian matrix, received from context function

   R - relaxation superoperator, received from context function

   K - kinetics superoperator, received from context function

Outputs

   fid.aa - COSY FID on F1 nuclei

   fid.ab - COSY FID on F1,F2 nuclei

   fid.ac - COSY FID on F1,F3 nuclei

Examples

Below is the output of the triple-channel PANSY example file (examples/nmr_liquids/pansy_triple_ch.m) for the 13C natural abundance glycine:

Pansy triple ch.png

Notes

Decoupling with respect to any of the working nuclei is impossible in this pulse sequence.

See also

Links to related functions and documentation sections.


Version 2.7, authors: Andrew Porter, Ilya Kuprov