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首页> 外文期刊>Physical Review, B. Condensed Matter >MAGNETO-PHOTON-PHONON RESONANCES IN TWO-DIMENSIONAL SEMICONDUCTOR SYSTEMS DRIVEN BY TERAHERTZ ELECTROMAGNETIC FIELDS
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MAGNETO-PHOTON-PHONON RESONANCES IN TWO-DIMENSIONAL SEMICONDUCTOR SYSTEMS DRIVEN BY TERAHERTZ ELECTROMAGNETIC FIELDS

机译:由特拉赫兹电磁场驱动的二维半导体系统中的磁光子声子共振

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In this paper, we propose to study the magneto-photon-phonon resonance effects observed in terahertz (THz)-driven two-dimensional electron gases in strong magnetic fields. The photon energy of the THz electromagnetic radiations is on the scale of the cyclotron energy (induced by strong magnetic fields) and the LO-phonon energy so that (i) THz radiations will modify strongly the process of electron energy relaxation in the device structure; (ii) electrons can gain the energy from ac and de driving fields through, e.g., absorption of the photons and lose the energy through, e.g., emission of the LO phonons; and (iii) resonant scattering will occur among different Landau levels (LL's) when a condition M omega(c)+omega=omega(LO) is satisfied, where omega(c) (omega,omega(LO)) is the cyclotron (photon, LO phonon) frequency and M is an index difference between two LL's. This leads to an enhancement of the resistivity and, consequently, to an enhanced rate of the absorption of the THz electromagnetic radiation in the sample systems. Varying the photon and cyclotron frequencies will result in a series of magneto-photon-phonon resonances observed in the de resistivity (or conductivity) and/or in the optical absorption coefficient. We have presented a detailed theoretical study to observe this quantum resonance effect. [References: 26]
机译:在本文中,我们建议研究在强磁场中在太赫兹(THz)驱动的二维电子气中观察到的磁光子声子共振效应。太赫兹电磁辐射的光子能量与回旋加速器能量(由强磁场感应)和本振声子能量成比例,因此(i)太赫兹辐射将极大地改变器件结构中电子能量弛豫的过程; (ii)电子可以通过例如吸收光子而从交流和反驱动场获得能量,并通过例如发出LO声子而损失能量; (iii)当满足条件M omega(c)+ omega = omega(LO)时,在不同的朗道能级(LL)之间会发生共振散射,其中omega(c)(omega,omega(LO))是回旋加速器(光子,LO声子频率和M是两个LL之间的指数差。这导致电阻率的提高,并因此导致样品系统中THz电磁辐射的吸收率提高。改变光子和回旋加速器的频率将导致在电阻率(或电导率)和/或光吸收系数中观察到一系列磁光子声子共振。我们提出了详细的理论研究来观察这种量子共振效应。 [参考:26]

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