2010•Neimenggu Shi-da xuebao. Zhexue shehui kexue hanwen banRequires access

Energy of Magnetopolaron in Wurtzite GaN/AlN Quantum Well

Hong Liang

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Abstract

In this paper,the energy levels of magnetopolaron in the wurtzite GaN /AlN quantum well structure are studied by using Lee-Low-Pines(LLP) variational method.The ground state energy in wurtzite GaN/AlN quantum well structure are calculated as a function of well width L and adscititious magnetic field B.In numerical calculation,anisotropy of the optical phonon modes in wurtzite GaN/AlN quantum well and interaction of electron-phonon was considered.For the qualitative analysis and comparition,the energy of magnetopolaron in zinc blende GaN/AlN quantum well are calculated.

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What this paper is about

In this paper,the energy levels of magnetopolaron in the wurtzite GaN /AlN quantum well structure are studied by using Lee-Low-Pines(LLP) variational method.The ground state energy in wurtzite GaN/AlN quantum well structure are calculated as a function of well width L and adscititious magnetic field B.In numerical calculation,anisotropy of the optical phonon modes in wurtzite GaN/AlN quantum well and interaction of electron-phonon was considered.For the qualitative analysis and comparition,the energy of magnetopolaron in zinc blende GaN/AlN quantum well are calculated.

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Available abstract

In this paper,the energy levels of magnetopolaron in the wurtzite GaN /AlN quantum well structure are studied by using Lee-Low-Pines(LLP) variational method.The ground state energy in wurtzite GaN/AlN quantum well structure are calculated as a function of well width L and adscititious magnetic field B.In numerical calculation,anisotropy of the optical phonon modes in wurtzite GaN/AlN quantum well and interaction of electron-phonon was considered.For the qualitative analysis and comparition,the energy of magnetopolaron in zinc blende GaN/AlN quantum well are calculated.

Key concepts: Wurtzite crystal structure, Condensed matter physics, Phonon, Quantum well, Anisotropy, Electron, Materials science, Quantum

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