803 research outputs found

    Spin-orbit interaction induced spin selective transmission through a multi-terminal mesoscopic ring

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    Spin dependent transport in a multi-terminal mesoscopic ring is investigated in presence of Rashba and Dresselhaus spin-orbit interactions. Within a tight-binding framework we use a general spin density matrix formalism to evaluate all three components (PxP_x, PyP_y and PzP_z) of the polarization vector associated with the charge current through the outgoing leads. It explores the dynamics of the spin polarization vector of current propagating through the system subjected to the Rashba and/or the Dresselhaus spin-orbit couplings. The sensitivity of the polarization components on the electrode-ring interface geometry is discussed in detail. Our present analysis provides an understanding of the coupled spin and electron transport in mesoscopic bridge systems.Comment: 11 pages, 14 figure

    Effect of Higher Order Partial Wave Phase- Shifts in Elastic Electron Scattering by Helium Atom

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    Elastic Scattering of Electrons by Atomic Hydrogen

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    S-Wave Neutron Strength Function. Potential Scattering Radius and the Optical Model

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    Differential Capture Probability of Electron in Proton-Hydrogen Collision at Low Energies

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    Elastic Resonance in Electron- Hydrogen Scattering

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