Difference between revisions of "Endor cw.m"
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parameters.sweep nuclear frequency sweep width, Hz | parameters.sweep nuclear frequency sweep width, Hz | ||
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parameters.npoints number of FID points to be computed | parameters.npoints number of FID points to be computed | ||
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H - Hamiltonian matrix, received from context function | H - Hamiltonian matrix, received from context function | ||
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R - relaxation superoperator, received from context function | R - relaxation superoperator, received from context function | ||
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K - kinetics superoperator, received from context function | K - kinetics superoperator, received from context function | ||
Revision as of 18:30, 30 December 2018
Fast approximate simulation of isotropic continuous-wave ENDOR pulse sequence - essentially an NMR spectrum weighted by hyperfine couplings is recorded.
Syntax
fid=endor_cw(spin_system,parameters,H,R,K)
Arguments
parameters.sweep nuclear frequency sweep width, Hz parameters.npoints number of FID points to be computed H - Hamiltonian matrix, received from context function R - relaxation superoperator, received from context function K - kinetics superoperator, received from context function
Outputs
fid - free induction decay whose Fourier transform
approximates a CW ENDOR spectrum
See also
endor_mims.m, endor_davies.m, eseem.m, fieldsweep.m, hyscore.m
Version 2.3, authors: Luke Edwards