2 research outputs found

    Resonance fluorescence and quantum correlation of two-dimensional parabolic quantum dots: spinā€“orbit interaction effects

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    In the present study, we theoretically study the resonance fluorescence of a two-dimensional quantum dot with parabolic confinement under the effect of Rashba spinā€“orbit interaction and the magnetic field. We investigate the dependence of the resonance fluorescence and second-order correlation function on the strength of Rashba spinā€“orbit interaction and the magnetic field has. According to the numerical analyses conducted in this work, location and width of the peaks in the spectrum, as well as the second-order correlation function are modified by the Rashba spinā€“orbit interaction. In addition, our results show that the presence of magnetic field leads to the strong modification of both the resonance fluorescence spectrum and the second-order correlation function. Overall Rashba spinā€“orbit interaction and magnetic field can be used for the arbitrary control of the resonance fluorescence characteristics in a quantum dot
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