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1.
磁场中束缚极化子的有效质量   总被引:6,自引:4,他引:2  
研究磁场中束缚极化子有效质量的性质,采用改进的线性组合算符和变分法讨论了磁场中强、弱耦合极化子的振动频率和有效质量与磁场B和库仑势的关系。以RbCl晶体为例进行了数值计算,结果表明:强耦合束缚磁极化子的振动频率λ和有效质量m*随磁场B的增加而增大。弱耦合磁极化子的振动频率λ也随磁场的增加而增加,并且发现由于库仑势的存在,使得强耦合束缚磁极化子的振动频率λ和有效质量m*有所增大。弱耦合磁极化子的有效质量仅和耦合强度α有关。  相似文献   
2.
磁场和温度对束缚磁极化子有效质量的影响   总被引:2,自引:2,他引:0  
研究强、弱耦合情形下,库仑场中束缚磁极化子的性质.采用改进的线性组合算符方法研究束缚磁极化子的振动频率和有效质量的温度依赖性,对RbCl晶体进行数值计算,结果表明:在强耦合情形下,束缚磁极化子的振动频率随温度的升高和磁场的增强而增加;有效质量随温度的增加而增加,但随磁场的增强而减少.  相似文献   
3.
采用Pekar类型的变分方法,在电子与体纵光学声子强耦合的条件下,计算得出了抛物量子点中电子的基态能量和第一激发态能量及其相应的本征波函数.量子点中这样的二能级体系可以作为一个量子比特.由于声子的自发辐射,造成量子比特的消相干,讨论了消相干时间与库仑结合参数,耦合强度,受限长度,色散系数的变化关系. 关键词: 量子点 量子比特 量子信息 消相干  相似文献   
4.
This paper studies the two-electron total energy and the energy of the electron--electron interaction by using a variational method of Pekar type on the condition of electric--LO-phonon strong coupling in a parabolic quantum dot. It considers the following three cases: 1) two electrons are in the ground state; 2) one electron is in the ground state, the other is in the first-excited state; 3) two electrons are in the first-excited state. The relations of the two-electron total energy and the energy of the electron--electron interaction on the Coulomb binding parameter, the electron-LO-phonon coupling constant and the confinement length of the quantum dot are derived in the three cases.  相似文献   
5.
库仑场中束缚光学极化子的温度效应   总被引:1,自引:1,他引:0  
采用线性组合算符和幺正变换方法研究强弱耦合情形下,库仑场中束缚光学极化子的基态能量、振动频率和平均声子数与温度的关系。对RbCl晶体进行数值计算,结果表明:在强耦合情形下,库仑场中束缚光学极化子的基态能量的绝对值随温度的升高而增大,振动频率、平均声子数随温度升高也增大。  相似文献   
6.
尹辑文  李伟萍  李红娟  于毅夫 《中国物理 B》2017,26(1):17201-017201
Within the frame of the Pavlov–Firsov spin–phonon coupling model, we study the spin-flip assisted by the acoustical phonon scattering between the first-excited state and the ground state in quantum dots. We analyze the behaviors of the spin relaxation rates as a function of an external magnetic field and lateral radius of quantum dot. The different trends of the relaxation rates depending on the magnetic field and lateral radius are obtained, which may serve as a channel to distinguish the relaxation processes and thus control the spin state effectively.  相似文献   
7.
The influence of electric field on a parabolic quantum dot qubit   总被引:1,自引:0,他引:1       下载免费PDF全文
This paper calculates the time evolution of the quantum mechanical state of an electron by using variational method of Pekar type on the condition of electric--LO-phonon strong coupling in a parabolic quantum dot. It obtains the eigenenergies of the ground state and the first-excited state, the eigenfunctions of the ground state and the first-excited state This system in a quantum dot may be employed as a two-level quantum system qubit. The superposition state electron density oscillates in the quantum dot with a period when the electron is in the superposition state of the ground and the first-excited state. It studies the influence of the electric field on the eigenenergies of the ground state, the first-excited state and the period of oscillation at the different electron--LO-phonon coupling constant and the different confinement length.  相似文献   
8.
温度对抛物量子点中弱耦合束缚磁极化子的影响   总被引:2,自引:2,他引:0       下载免费PDF全文
采用线性组合算符和幺正变换方法研究温度对量子点中弱耦合束缚磁极化子性质的影响,导出了弱耦合束缚磁极化子的振动频率、基态能量和声子平均数随温度的变化关系。取CdTe晶体为例进行数值计算,结果表明:弱耦合束缚磁极化子的振动频率、基态能量和声子平均数随温度的升高而增大,基态能量随量子点的受限强度的增强而迅速增大。  相似文献   
9.
采用线性组合算符和幺正变换方法研究抛物量子点中弱耦合束缚极化子性质的温度依赖性,导出了弱耦合束缚极化子的振动频率、基态能量和声子平均数随温度的变化关系。取ZnS晶体为例进行数值计算,结果表明:量子点中弱耦合束缚极化子的振动频率、基态能量和声子平均数随温度的升高而增大。  相似文献   
10.
This paper reports that the ground-state energy of polaron was obtained with strong electron-LO-phonon coupling by using a variational method of the Pekar type in a parabolic quantum dot. Quantum transition is occurred in the quantum system due to the electron-phonon interaction and the influence of temperature. That is the polaron transit from the ground-state to the first-excited state after absorbing a LO-phonon and it causes the change of the polaron lifetime. Numerical calculations are performed and the results illustrate that the ground-state lifetime of the polaron will increase with increasing the ground-state energy of polaron and decrease with increasing the electron-LO-phonon coupling strength, the confinement length of the quantum dot and the temperature.  相似文献   
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