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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Polaronic effects on the collective excitation in a GaAs parabolic quantum wire
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Polaronic effects on the collective excitation in a GaAs parabolic quantum wire

机译:极化子效应对GaAs抛物线形量子线中集体激发的影响

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In this paper, the plasmon-longitudinal optical (LO) phonon interaction effects on the intrasubband structure factor, on the pair correlation function and on the intrasub-band plasmon energy associated with the lowest subband in a GaAs parabolic quantum well wire (QWW) are investigated by varying the subband separation energy and the electronic density. The calculations are performed using the self-consistent field approximation, which includes the local-field correction within the Singwi, Tosi, Land and Sj?lander (STLS) theory, at zero temperature and assuming a three-subband model where only the first subband is occupied by electrons. The theoretical results obtained via STLS theory are compared with the random phase approximation (RPA) approach results, in order to emphasize the importance of the local field corrections (LFC) for the calculation of the collective excitations in quasi-one-dimensional systems.
机译:本文中,等离子-纵向光子(LO)声子相互作用对GaAs抛物线型量子阱线(QWW)中与最低子带相关的子带内结构因子,对相关函数和子带内等离子体激元能量的影响是通过改变子带分离能量和电子密度来进行研究。使用自洽场近似进行计算,包括在Singwi,Tosi,Land和Sj?lander(STLS)理论中进行的局部场校正,温度为零,并假设一个三子带模型,其中只有第一个子带被电子占据。将通过STLS理论获得的理论结果与随机相位近似(RPA)方法的结果进行比较,以强调局部场校正(LFC)对于计算准一维系统中的集体激发的重要性。

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