首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 203 毫秒
1.
薛惠杰  肖景林 《发光学报》2005,26(6):714-718
考虑电子与体纵光学声子相互作用时,采用LLP变分方法,研究柱形量子线中极化子性质,导出了柱形量子线中极化子光学声子平均数随量子线截面半径和电子-LO声子耦合强度的变化关系.结果表明柱形量子线中极化子的光学声子平均数随量子线截面半径减小而减小,随电子-LO声子耦合强度增强而增加.  相似文献   

2.
陈知红  方天红 《光子学报》2014,39(4):630-633
在有效质量近似下利用量子力学的密度矩阵理论,采用无限深势阱模型解三维薛定谔方程得到电子的本征能量和波函数.从理论上计算了考虑极化子效应后,在导带子带间跃迁时ZnS/CdSe柱型核壳结构量子点光学克尔效应的三阶极化率.通过数值计算,分析了电子-LO声子和电子-IO声子相互作用对ZnS/CdSe柱型核壳结构量子点光学克尔效应的三阶极化率的影响.结果表明:极化子效应对光学克尔效应的三阶极化率 有很大影响,并且影响的大小与量子点的尺寸大小有关.    相似文献   

3.
在有效质量近似下利用量子力学的密度矩阵理论,采用无限深势阱模型解三维薛定谔方程得到电子的本征能量和波函数.从理论上计算了考虑极化子效应后,在导带子带间跃迁时ZnS/CdSe柱型核壳结构量子点光学克尔效应的三阶极化率.通过数值计算,分析了电子-LO声子和电子-IO声子相互作用对ZnS/CdSe柱型核壳结构量子点光学克尔效应的三阶极化率的影响.结果表明:极化子效应对光学克尔效应的三阶极化率有很大影响,并且影响的大小与量子点的尺寸大小有关.  相似文献   

4.
柱形量子线中极化子的电子与LO声子之间相互作用能   总被引:3,自引:2,他引:1  
丁朝华  肖景林 《发光学报》2003,24(5):501-504
采用变分法,研究了柱形量子线中在考虑电子与LO声子相互作用的情况下,极化子在基态时系统的能量以及电子-LO声子之间的相互作用能。数值计算结果表明:随着柱形量子线截面半径的减小,基态能量和电子-LO声子相互作用能的绝对值都增大。  相似文献   

5.
外电场下极性量子阱中杂质态结合能   总被引:4,自引:3,他引:1       下载免费PDF全文
我们用变分方法研究了外电场下量子阱中的杂质态结合能,计算中既考虑了电子同体纵光学声子和界面光学声子的相互作用又考虑了杂质中心同体纵光学声子和界面光学声子的相互作用。我们以GaAs/Al0.3Ga0.7As量子阱为例,讨论了结合能随杂质位置、阱宽和电场强度的变化规律。得到了电子-声子相互作用对杂质态结合能和斯塔克效应的修正是相当明显的。  相似文献   

6.
红兰  肖景林 《发光学报》2007,28(5):673-678
研究了量子线中弱耦合磁极化子的性质.采用线性组合算符和微扰法导出量子线中弱耦合磁极化子的基态能量.在计及电子在反冲效应中发射和吸收不同波矢的声子之间的相互作用时,讨论了量子线的受限强度、电子-LO声子耦合强度和声子之间相互作用对量子线中弱耦合磁极化子的基态能量的影响.数值计算结果表明:量子线中弱耦合磁极化子的基态能量随量子线的受限强度ω0的增大而迅速增大.当受限强度ω0取相同值时,电子-声子耦合强度α越大基态能量E0越小,磁场的回旋频率ωe越大基态能量E0越大.在弱磁场情况下,当ω0<0.5时,随着量子线的受限强度ω0的减少p值迅速增大,即对于弱磁场声子之间相互作用的影响不能忽略.  相似文献   

7.
曹艳娟  闫祖威  石磊 《发光学报》2013,34(9):1128-1134
采用三角势近似界面导带弯曲,研究了有限高势垒GaN/Ga1-x Al x N球形量子点中束缚极化子的结合能及其压力效应。数值计算了杂质态与声子之间相互作用对结合能的影响,同时与方形势垒进行了比较。结果表明,随着电子面密度的增加,导带弯曲效应增强,束缚极化子结合能逐渐下降。当电子面密度n s=(6.0,8.0)×1011/cm2且量子点半径R>10 nm时,束缚极化子的结合能趋近于一个相同且较小的值。结合能的极化效应主要来自杂质与光学声子相互作用的贡献。  相似文献   

8.
抛物量子点中弱耦合磁极化子的性质   总被引:12,自引:7,他引:5  
王立国  肖景林 《发光学报》2003,24(6):562-566
应用线性组合算符和幺正变换方法研究了抛物量子点中磁极化子的基态性质。得出基态能和基态束缚能随有效束缚强度增大而减小,随回旋频率增大而增大。当有效柬缚强度给定,基态能量随电子-体纵光学声子耦合强度增加而减小。当有效束缚强度l0>0.3时,电子-体纵光学声子耦合强度的变化对量子点中弱耦合磁极化子的基态能量的影响变得显著。当有效束缚强度l0<0.3时,电子-体纵光学声子耦合强度的变化对基态能量影响很小。由于有效束缚强度与量子点受限强度的平方根成反比,所以量子点受限越强,基态能量、基态束缚能越大,电子一体纵光学声子耦合强度和磁场的变化对量子点的影响相对越小;当量子点受限变弱时,电子-声子耦合强度变化对量子点的影响变大,磁场对量子点的影响也变大,所以在量子点中,极化子对量子点的影响不容忽略。  相似文献   

9.
抛物量子线中弱耦合极化子的有效质量和光学声子平均数   总被引:9,自引:5,他引:4  
讨论电子与体纵光学(LO)声子弱耦合时对抛物量子线中极化子性质的影响.采用Tokuda改进的线性组合算符法、Lagrange乘子和变分法,导出了抛物量子线中弱耦合极化子的有效质量和光学声子平均数随拉格朗日乘子变化的规律及极化子振动频率随量子线约束强度的变化规律.并以ZnS量子线为例进行了数值计算,结果表明:抛物量子线中弱耦合极化子的有效质量m*和光学声子平均数N随着拉格朗日乘子u的增加而增大;该结论与体材料中结论基本一致,但量子线中的效应比体材料更明显,表明量子线对电子约束的增强,使极化子效应更明显.同时,极化子振动频率λ随约束强度ω0的增强而增大.  相似文献   

10.
郭康贤 《光子学报》1998,27(5):391-395
本文利用密度矩阵方法研究了表面光学声子对柱形量子线中三次谐波振荡的影响,并且导出了三次谐波振荡的表达式。然后,以GaAs柱形量子线为例作了数值计算。研究表明,当柱形量子线的横向半径d非常小时,电子和表面光学声子之间的耦合强度就非常大,表面光学声子对三次谐波振荡的影响就更强。  相似文献   

11.
郭康贤 《中国物理快报》2005,22(11):2953-2956
The optical Kerr effect in a quantum disc is investigated with the density-matrix approach, most emphasis is devoted to the electron-phonon interactions on the optical Kerr effect. The numerical results are presented with characteristic parameters of a GaAs quantum disc. It is shown that the optical Kerr effect increases as the disc thickness D decreases. LO-phonons impose greater influence on the optical Kerr effect than SO-phonons. The smaller the disc thickness D, the sharper the peak, and the larger the peak intensity. When the disc thickness is greater than 30, the peak will disappear gradually.  相似文献   

12.
从理论上研究子电子-声子相互作用对Morse量子阱中光吸收系数的影响,首先利用微扰论方法求出考虑极化子效应时的电子波函数和能级,然后利用密度矩阵和迭代法得到光吸收系数的解析表达式,最后以典型的GaAs/AlGaAs Morse量子阱为例进行数值计算。结果表明,极化子效应使光吸收系数比仅考虑电子的情况增大了,并且在相同光强的情况下吸收饱和现象更明显;极化子效应的影响随着阱的非对称性的增强而增大;电声相互作用对电子能级的修正导致光吸收系数峰值向高能方向偏移。  相似文献   

13.
The effects of electric field and size on the electron-phonon interaction with an on-center impurity in a Zn1?x Cd x Se/ZnSe spherical quantum dot are studied, taking into account the interactions with confined, half-space and surface optical phonons. In addition, the interaction between impurity and phonons has also been considered. The results show that the electron-confined, electron-half-space, and electron-surface optical phonon interaction energies are all negative. The electron-confined optical phonon interaction energy is weakened by the electric field, but the electron-half-space and electron-surface optical phonon interaction energies are strengthened by it. In particular, the electron-surface optical phonon interaction depends strongly on the electric field, and it will vanish when the electric field is absent. It is also found that the electron-confined optical phonon interaction and electron-impurity “exchange” interaction energies reach a peak values as the quantum dot radius increases and then gradually decrease, but the electron-half-space optical phonon interaction energy exponentially quickly approaches 0 as the quantum dot radius increases.  相似文献   

14.
水溶性CdTe量子点的三阶光学非线性极化特性   总被引:1,自引:0,他引:1       下载免费PDF全文
利用超短脉冲Z扫描技术和光学Kerr效应研究了以巯基丙酸为稳定剂的CdTe量子点水溶液的三阶光学非线性极化特性. 在532nm,30ps和800nm,130fs脉冲激光激发下, 发现分别具有正负相反取值的三阶光学非线性折射率,自由载流子吸收和双光子吸收分别是这两种脉冲激光激发下三阶光学非线性吸收的起因. 测量得到CdTe量子点的三阶光学非线性极化率约为CS2的32倍, 在520—700nm光谱区的CdTe量子点的光学响应时间小于400fs. 关键词: CdTe量子点(QDs) Z扫描 三阶光学非线性极化特性 双光子吸收  相似文献   

15.
The polaron self-energy and correction to the electron effective mass in a freestanding quantum wire is investigated by the perturbation approach.The polaron effect of the electron-confined longitudinal optical (LO) phonon and surface optical (SO) phonon interactions are separately worked out. Numerical calculation on a GaAs quantum wire shows that the confined LO phonon contribution to the polaron self-energy is relatively small for a narrow wire and gradually approach that of the bulk material when the radius of the wire increases. While the contribution of the SO phonon modes is big for small wire radius and then decreases as the radius increases.  相似文献   

16.
The variational method and the effective mass approximation are applied to calculate the binding energies of the hydrogenic impurity states in a cylindrical quantum wire with finite deep potential well. The phonon effects on the impurity states are considered by taking both the couplings of the electron-phonon and the impurity ion-phonon into account. The numerical results for the GaAs cylindrical quantum wire are given and discussed. It is found that the ion-phonon interaction reduces the impurity binding energy and supplies key contribution to the energy shift, but the electron-phonon coupling enhances the binding energy less. Longitudinal optical (LO) phonons play more important role than interface optical (IO) phonons in the impurity potential screening. The polaron effect caused by LO phonons is more important when the wire is thinner, otherwise the LO phonons are dominant for the thicker wires.  相似文献   

17.
The optical absorption coefficients considering electron-phonon interaction in asymmetrical quantum wells are theoretically studied. The result shows that the optical absorption coefficients depend strongly on the parameters of quantum well. Interestingly, the theoretical values of the optical absorption coefficients obviously increase with considering the electron-phonon interaction.  相似文献   

18.
The Feynman-Haken variational path integral theory is, for the first time, generalized to calculate the ground-state energy of an electron coupled simultaneously to a Coulomb potential and to a longitudinal-optical (LO) phonon field in parabolic quantum wires. It is shown that the polaronic correction to the ground-state energy is more sensitive to the electron-phonon coupling constant than the Coulomb binding parameter and monotonically stronger as the effective wire radius decreases. We apply our calculations to several semiconductor quantum wires and find that the polaronic correction can be considerably large. Received 16 November 1998  相似文献   

19.
Polarons in a cylindrical quantum well wire with finite confining potential   总被引:1,自引:0,他引:1  
The polaron self-energy and the correction to the electron effective mass in a cylindrical quantum well wire (QWW) are studied by the perturbation approach. The interactions of electrons with different phonon modes in the QWW system, including the confined longitudinal optical phonon modes, in the wire (LO1), in the barrier materials (LO2) and in the interface optical (IO) phonon modes, are considered. The result shows that the LO1 phonon’s contribution to the polaron self-energy increases gradually as the radius of the wire increases, and finally reaches that of the three-dimensional limit, while the LO2 phonon contributes only when the radius of the wire is very small. Also, the contribution of the IO phonon modes first increases quickly as the wire radius increases and soon reaches a maximum, then reduces to zero monotonically.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号