410 research outputs found

    Insensitivity of spin dynamics to the orbital angular momentum transferred from twisted light to extended semiconductors

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    We study the spin dynamics of carriers due to the Rashba interaction in semiconductor quantum disks and wells after excitation with light with orbital angular momentum. We find that although twisted light transfers orbital angular momentum to the excited carriers and the Rashba interaction conserves their total angular momentum, the resulting electronic spin dynamics is essentially the same for excitation with light with orbital angular momentum l=+∣l∣l=+|l| and l=−∣l∣l=-|l|. The differences between cases with different values of ∣l∣|l| are due to the excitation of states with slightly different energies and not to the different angular momenta per se, and vanish for samples with large radii where a kk-space quasi-continuum limit can be established. These findings apply not only to the Rashba interaction but also to all other envelope-function approximation spin-orbit Hamiltonians like the Dresselhaus coupling.Comment: 5 pages, 2 figure

    Infinite order excitonic Bloch equations for asymmetric nanostructures

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    We present a new exciton-based formalism for calculating the coherent response of asymmetric semiconductor multiple quantum well structures to ultra-short optical pulses valid to infinite order in the optical field and including the self-generated intraband fields. We use these equations to calculate and explain the oscillations with time delay of peaks in the spectrally-resolved degenerate four wave mixing signals from biased semiconductor superlattices, obtaining good agreement with experiment
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