Strong pump pulses shorten the effective spin relaxation time in spin inertia measurements, and transverse nuclear fluctuations produce resonant spin amplification in Faraday geometry.
(1) for a finite modulation frequency ωm, we solve the equations of motion (2) and (3) numerically by apply- ing the Dormand-Prince method provided by odeint [46]
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Spin inertia and polarization recovery in quantum dots: Role of pumping strength and resonant spin amplification
Strong pump pulses shorten the effective spin relaxation time in spin inertia measurements, and transverse nuclear fluctuations produce resonant spin amplification in Faraday geometry.