The energy-loss rate via polar-optical phonon scattering in quantum wires |
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Authors: | Arshak L. Vartanian Anna L. Asatryan Albert A. Kirakosyan |
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Affiliation: | Department of Solid State Physics, Yerevan State University, Al. Manookian 1, Yerevan 375025, Armenia |
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Abstract: | The hot-electron energy-loss rate (ELR) conditioned by confined and interface polar-optical (PO) phonons for a quasi-one-dimensional cylindrical quantum wire embedded in a dielectric medium is investigated analytically. It is shown that the inclusion of the PO-phonon confinement effects is crucial for accurate calculation of the ELR in quantum wire. Taking into account the nonequilibrium phonon populations, the hot-electron ELR is derived by a model, which includes the lowest subband occupation and the phonon confinement effects. The contribution of intersubband transitions to electron ELR for the GaAs quantum wire embedded in AlxGa1−xAs is estimated. The extrema on the ELR dependences on electron density are obtained. |
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Keywords: | Quantum wire Confined and interface phonons Intersubband transition Energy-loss rate |
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