首页> 外文会议>NATO Advanced Research Workshop on Optical Properties of 2D Systems with Interacting Electrons; Jun 13-16, 2002; St. Petersburg, Russia >CORRELATION BETWEEN TRION AND HOLE IN FERMI DISTRIBUTION IN PROCESS OF TRION PHOTO-EXCITATION IN DOPED QWs
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CORRELATION BETWEEN TRION AND HOLE IN FERMI DISTRIBUTION IN PROCESS OF TRION PHOTO-EXCITATION IN DOPED QWs

机译:掺杂量子阱中三价离子光激发过程中三价离子与孔中费米分布的相关性

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The problem of correlation between a trion and a hole in the electron Fermi distribution created in the process of trion photo-excitation in doped quantum wells is under consideration. The hole in the Fermi distribution appears in the trion creation process consisting of picking of the Fermi Sea electron up by the exciton created in virtual state due to photon absorption. It is demonstrated that the interaction results in formation of a correlated state of the trion and the hole in the Fermi Sea. The state has excitation energy which is less then trion energy minus Fermi energy that can be obtained as a lower edge of trion excitation band using the simple energy conservation low in the picture of independent trion and electrons. The wave function of the correlated state is real and decreases with increase of distance between the trion and the Fermi Sea hole, r, as 1/r~(3/2). The wave function can be normalized to unity and it corresponds to correlated state of the trion and Fermi Sea hole. In contrast to this state, the states with excitation energies in the absorption band between the trion energy and the trion energy minus Fermi energy have complex wave functions that decrease as 1/r~(1/2). These states correspond to the trion and the Fermi Sea hole that is running away from the trion. The correlated state described above is supposed to be responsible for the narrow trion absorption line that was observed experimentally.
机译:正在考虑三重子与掺杂量子阱中三重子光激发过程中产生的电子费米分布中的空穴之间的相关性问题。费米分布中的空穴出现在三重子产生过程中,该过程由由于光子吸收而以虚拟状态产生的激子将费米海电子拾起。结果表明,相互作用导致费米海中tri和孔的相关状态形成。该状态的激发能小于三重子能量减去费米能量,费米能量可以通过使用独立的三重子和电子的简单能量守恒来获得,作为三重子激发带的下边缘。相关态的波函数是实数,并且随着三重子与费米海洞的距离r的增加而减小,为1 / r〜(3/2)。波动函数可以归一化为单位,并且它对应于Trion和费米海洞的相关状态。与此状态相反,在三重子能量与三重子能量减去费米能量之间的吸收带中具有激发能的状态具有降低为1 / r〜(1/2)的复波函数。这些状态对应于三重奏和远离三重奏的费米海洞。上面描述的相关状态应该是实验观察到的狭窄的Trion吸收线的原因。

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