Added power/trap depth label to the Rabi oscillation plot.
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@ -167,12 +167,13 @@ grid on
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a = 180 * (AtomicUnitOfPolarizability / (2 * SpeedOfLight * VacuumPermittivity));
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waist_y = 250E-6;
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waist_z = 50E-6;
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Power = 4;
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Power = 0.2;
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TrapDepth = ((8 * a .* Power) ./ (pi * waist_y * waist_z));
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TwoPhotonRecoilEnergy = (2*PlanckConstantReduced*2*pi/Wavelength)^2 / (2 * Dy164Mass);
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TrapDepthsInUnitsOfRecoilEnergy = TrapDepth ./ TwoPhotonRecoilEnergy;
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RabiOscillationFrequency = (1/PlanckConstantReduced) .* (sqrt(TrapDepth.^2/2 + TwoPhotonRecoilEnergy^2));
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PulseDurations = linspace(1E-6, 10E-6, 1000);
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PulseDurations = linspace(1E-6, 150E-6, 1000);
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alpha = TwoPhotonRecoilEnergy / PlanckConstantReduced;
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beta = TrapDepth / PlanckConstantReduced;
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@ -182,8 +183,10 @@ RabiOscillations = C .* (sin(0.5 .* PulseDurations .* (RabiOscillationF
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figure(6);
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set(gcf,'Position',[100 100 950 750])
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plot(PulseDurations .* 1E6, RabiOscillations, LineWidth=2.0)
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plot(PulseDurations .* 1E6, RabiOscillations, LineWidth=2.0, DisplayName=['\bf Power = ' num2str(Power) ' W / Trap depth = ' num2str(round(TrapDepthsInUnitsOfRecoilEnergy, 1)) ' E_r'])
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xlabel('Pulse duration (µs)', FontSize=16)
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ylabel('Fraction of atoms in first order', FontSize=16)
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% title(['\bf Upper bound = ' num2str(round(max(RabiOscillationFrequency .* 1E-3),1)) ' kHz; Lower bound = ' num2str(round(min(RabiOscillationFrequency .* 1E-3),1)) ' kHz'], FontSize=16)
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title('\bf Expected Rabi oscillation', FontSize=16)
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grid on
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legend(FontSize=16)
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