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author | Eugeniy Mikhailov <evgmik@gmail.com> | 2010-01-21 22:24:43 +0000 |
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committer | Eugeniy Mikhailov <evgmik@gmail.com> | 2010-01-21 22:24:43 +0000 |
commit | dbc850d4eb1969c3c1818faec8b0ac3838d7134c (patch) | |
tree | 04b69a51043b6ef0f9f809938d8c8676b9071432 /liouville.m | |
parent | 32c30704e9debda5604342d2b316c0ef948eb111 (diff) | |
download | multi_mode_eit-dbc850d4eb1969c3c1818faec8b0ac3838d7134c.tar.gz multi_mode_eit-dbc850d4eb1969c3c1818faec8b0ac3838d7134c.zip |
proper calculation of light transmission
Diffstat (limited to 'liouville.m')
-rw-r--r-- | liouville.m | 8 |
1 files changed, 4 insertions, 4 deletions
diff --git a/liouville.m b/liouville.m index 53a84ef..5ad17e5 100644 --- a/liouville.m +++ b/liouville.m @@ -65,7 +65,7 @@ E_field_lab_pos_freq.linear = E_field_zero + (1.00000+0.00000i)*E_field_probe + phi=pi*2/8; % theta is angle between lab z axis (light propagation direction) and magnetic field axis (z') theta=pi/2; -phi=pi/4; +phi=0/4; % we define light as linearly polarized % where phi is angle between light polarization and axis x @@ -110,11 +110,11 @@ fflush (stderr); %kappa_p=cellfun( @susceptibility_steady_state_at_freq, problems_cell_array); %kappa_p=parcellfun(2, @susceptibility_steady_state_at_freq, problems_cell_array); %[xi_linear, xi_left, xi_right]=parcellfun(2, @susceptibility_steady_state_at_freq, problems_cell_array); -total_absorption_vs_detuning=parcellfun(2, @total_field_absorption, problems_cell_array); -%total_absorption_vs_detuning=cellfun(@total_field_absorption, problems_cell_array); +relative_transmission_vs_detuning=parcellfun(2, @total_relative_transmission, problems_cell_array); +%relative_transmission_vs_detuning=cellfun(@total_relative_transmission, problems_cell_array); %save 'xi_vs_detuning.mat' detuning_freq xi_linear xi_left xi_right ; -save '/tmp/total_absorption_vs_detuning.mat' detuning_freq total_absorption_vs_detuning; +save '/tmp/relative_transmission_vs_detuning.mat' detuning_freq relative_transmission_vs_detuning; output_results; |