Difference between revisions of "Eigenfields.m"
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| − | Hz - field-dependent part of the laboratory-frame Hamiltonian operator | + | Hz - field-dependent part of the laboratory-frame Hamiltonian operator |
in Hilbert space, or commutation superoperator in Liouville space, | in Hilbert space, or commutation superoperator in Liouville space, | ||
normalised to 1 Tesla | normalised to 1 Tesla | ||
| − | Hc - field-independent part of the laboratory-frame Hamiltonian operator | + | Hc - field-independent part of the laboratory-frame Hamiltonian operator |
in Hilbert space, or commutation superoperator in Liouville space, | in Hilbert space, or commutation superoperator in Liouville space, | ||
containing couplings and offsets | containing couplings and offsets | ||
| − | Hmw - observable operator in Hilbert space, or observable vector in | + | Hmw - observable operator in Hilbert space, or observable vector in |
Liouville space, without the amplitude prefactor | Liouville space, without the amplitude prefactor | ||
| − | parameters.window - magnetic-field window, Tesla | + | parameters.window - magnetic-field window, Tesla |
| − | parameters.mw_freq - microwave frequency, Hz | + | parameters.mw_freq - microwave frequency, Hz |
| − | parameters.orientation - three Euler angles in radians specifying the | + | parameters.orientation - three Euler angles in radians specifying the |
system orientation | system orientation | ||
| − | parameters.tm_tol - relative transition moment tolerance | + | parameters.tm_tol - relative transition moment tolerance |
| − | parameters.pp_tol - peak position tolerance in Tesla; this should | + | parameters.pp_tol - peak position tolerance in Tesla; this should |
be much smaller than the typical line width | be much smaller than the typical line width | ||
| − | parameters.fwhm - transition full width at half maximum, Tesla | + | parameters.fwhm - transition full width at half maximum, Tesla |
==Outputs== | ==Outputs== | ||
| − | tran.tf - vector of transition fields in Tesla | + | tran.tf - vector of transition fields in Tesla |
| − | tran.tm - vector of transition moments | + | tran.tm - vector of transition moments |
| − | tran.tw - vector of transition FWHMs in Tesla | + | tran.tw - vector of transition FWHMs in Tesla |
| − | tran.pd - vector of energy level population differences | + | tran.pd - vector of energy level population differences |
| − | tran.ti - transition identity array, one row per transition | + | tran.ti - transition identity array, one row per transition |
| − | tran.tj - vector of scaled field-sweep Jacobians | + | tran.tj - vector of scaled field-sweep Jacobians |
==Notes== | ==Notes== | ||
Revision as of 16:47, 5 June 2026
Computes resonance fields. For a Hamiltonian Hc+b*Hz, returns all magnetic fields b for which the difference between two eigenvalues of Hc+b*Hz is equal to the frequency provided, and the transition moment across the specified operator Hmw is significant.
Syntax
tran=eigenfields(spin_system,parameters,Hz,Hc,Hmw)
Arguments
Hz - field-dependent part of the laboratory-frame Hamiltonian operator
in Hilbert space, or commutation superoperator in Liouville space,
normalised to 1 Tesla
Hc - field-independent part of the laboratory-frame Hamiltonian operator
in Hilbert space, or commutation superoperator in Liouville space,
containing couplings and offsets
Hmw - observable operator in Hilbert space, or observable vector in
Liouville space, without the amplitude prefactor
parameters.window - magnetic-field window, Tesla
parameters.mw_freq - microwave frequency, Hz
parameters.orientation - three Euler angles in radians specifying the
system orientation
parameters.tm_tol - relative transition moment tolerance
parameters.pp_tol - peak position tolerance in Tesla; this should
be much smaller than the typical line width
parameters.fwhm - transition full width at half maximum, Tesla
Outputs
tran.tf - vector of transition fields in Tesla
tran.tm - vector of transition moments
tran.tw - vector of transition FWHMs in Tesla
tran.pd - vector of energy level population differences
tran.ti - transition identity array, one row per transition
tran.tj - vector of scaled field-sweep Jacobians
Notes
In Hilbert space, the very efficient Schweiger-Stoll method is used. In Liouville space, the very general but rather slow generalised eigensolver supplied with Matlab is used.
See also
Version 2.6, authors: Ilya Kuprov