Difference between revisions of "Noveldnp steady.m"
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ilya.kuprov@weizmann.ac.il | ilya.kuprov@weizmann.ac.il | ||
guinevere.mathies@uni-konstanz.de | guinevere.mathies@uni-konstanz.de | ||
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| + | ==See also== | ||
| + | [[solid_effect.m]], [[dnp_time_dep.m]], [[dnp_freq_scan.m]], [[Built-in_experiments#DNP_experiments|DNP experiments]] | ||
Revision as of 12:15, 25 April 2026
Nuclear spin Orientation via Electron spin Locking (NOVEL) and pulsed
solid effect (SE), steady-state version. For futher information see:
https://doi.org/10.1016/0022-2364(88)90190-4 https://doi.org/10.1063/1.5000528
Syntax (call from powder context)::
dnp=noveldnp_steady(spin_system,parameters,H,R,K)
Syntax
dnp=noveldnp_steady(spin_system,parameters,H,R,K)
Arguments
H - Hamiltonian matrix, received from
context function
R - relaxation superoperator, received
from context function, must be ther-
malised to some finite temperature
K - kinetics superoperator, received
from context function
parameters.irr_powers - microwave amplitude (aka electron
nutation frequency), Hz
parameters.coil - detection state(s)
parameters.contact_dur - contact time, seconds
parameters.shot_spacing - delay between microwave irradiation periods
parameters.flippulse - 0: Solid Effect (no flip pulse)
1: NOVEL (90-degree flip pulse)
parameters.flipback - 0: NOVEL without flipback pulse
1: NOVEL with flipback pulse
parameters.addshift - shift to center the field profile
parameters.el_offs - microwave resonance offsets
Outputs
dnp - steady state observable on the de-
tection state vector as a function
of microwave resonance offset
shebha-anandhi.jegadeesan@uni-konstanz.de ilya.kuprov@weizmann.ac.il guinevere.mathies@uni-konstanz.de
See also
solid_effect.m, dnp_time_dep.m, dnp_freq_scan.m, DNP experiments