首页> 外文期刊>The European physical journal, B. Condensed matter physics >Electron and donor-impurity-related Raman scattering and Raman gain in triangular quantum dots under an applied electric field
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Electron and donor-impurity-related Raman scattering and Raman gain in triangular quantum dots under an applied electric field

机译:电场作用下三角量子点中电子和施主杂质相关的拉曼散射和拉曼增益

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The differential cross-section of electron Raman scattering and the Raman gain are calculated and analysed in the case of prismatic quantum dots with equilateral triangle base shape. The study takes into account their dependencies on the size of the triangle, the influence of externally applied electric field as well as the presence of an ionized donor center located at the triangle's orthocenter. The calculations are made within the effective mass and parabolic band approximations, with a diagonalization scheme being applied to obtain the eigenfunctions and eigenvalues of the x-y Hamiltonian. The incident and secondary (scattered) radiation have been considered linearly-polarized along the y-direction, coinciding with the direction of the applied electric field. For the case with an impurity center, Raman scattering with the intermediate state energy below the initial state one has been found to show maximum differential cross-section more than by an order of magnitude bigger than that resulting from the scheme with lower intermediate state energy. The Raman gain has maximum magnitude around 35 nm dot size and electric field of 40 kV/cm for the case without impurity and at maximum considered values of the input parameters for the case with impurity. Values of Raman gain of the order of up to 10(4) cm(-1) are predicted in both cases.
机译:在具有等边三角形基本形状的棱柱形量子点的情况下,计算和分析了电子拉曼散射的微分截面和拉曼增益。该研究考虑了它们对三角形大小的依赖性,外部施加电场的影响以及位于三角形正交中心的电离施主中心的存在。在有效质量和抛物线近似范围内进行计算,并应用对角化方案以获得x-y哈密顿量的本征函数和本征值。入射和次级(散射)辐射被认为是沿y方向线性极化的,与施加电场的方向一致。对于具有杂质中心的情况,已经发现中间状态能量低于初始状态一个的拉曼散射显示出最大的微分横截面,比具有较低中间状态能量的方案所产生的最大差分横截面大一个数量级。对于无杂质的情况,拉曼增益的最大大小约为35 nm,电场大小为40 kV / cm,对于具有杂质的情况,拉曼增益具有最大输入参数值。在这两种情况下,预测的拉曼增益值最高可达10(4)cm(-1)。

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