Difference between revisions of "Zulf abrupt.m"
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{{DISPLAYTITLE:zulf_abrupt.m}} __NOTOC__ | {{DISPLAYTITLE:zulf_abrupt.m}} __NOTOC__ | ||
Zero-field NMR with an abrupt field drop. | Zero-field NMR with an abrupt field drop. | ||
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| + | Zero-field magnetometry experiment that propagates the initial condition through an exponential drop in the external magnetic field and then runs the detection at zero field. | ||
==Syntax== | ==Syntax== | ||
fid=zulf_abrupt(spin_system,parameters,H,R,K) | fid=zulf_abrupt(spin_system,parameters,H,R,K) | ||
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==Parameters== | ==Parameters== | ||
Revision as of 19:02, 5 June 2026
Zero-field NMR with an abrupt field drop.
Zero-field magnetometry experiment that propagates the initial condition through an exponential drop in the external magnetic field and then runs the detection at zero field.
Syntax
fid=zulf_abrupt(spin_system,parameters,H,R,K)
Parameters
parameters.drop_field - the magnetic field that the sample should
be dropped to, starting from the field spe-
cified in sys.magnet, Tesla
parameters.drop_time - drop time, seconds
parameters.drop_npoints - number of discretisation points in the drop
parameters.drop_rate - field drop rate, Hz
parameters.sweep - sweep width during acquisition
parameters.npoints - number of points during acquisition
parameters.detection - 'uniaxial' to emulate common ZULF
hardware, 'quadrature' for proper
frequency sign discrimination
parameters.flip_angle - pulse flip angle in radians for
protons; for other nuclei, this
will be scaled by the gamma ratio
Outputs
fid - the free induction decay detected on the
internally generated gamma-weighted state
Notes
This function ignores the offset parameter and makes its own Hamiltonian.
Examples
See zero_field_acetonitrile.m file in examples/nmr_zerofield directory.
See also
zerofield.m, fieldscan_enlev.m, fieldscan_magn.m
Version 2.1, authors: Ilya Kuprov