1.
Property of Weak-coupling Polaron in a Parabolic Quantum Dot
抛物形量子点中弱耦合极化子的性质
2.
Properties of the Weak-coupling Polaron in Infinite Quantum Well
无限深量子阱中弱耦合极化子的性质
3.
The Mean Number of Phonons of Weak-coupling Polaron in Quantum Disk
盘型量子点中弱耦合极化子的声子平均数
4.
Influence of Magnetic Field on Interaction Energy of Weak Coupling Polaron in an Asymmetric Quantum Dot
磁场对非对称量子点中弱耦合极化子的相互作用能的影响
5.
Property of Weak-coupling Magnetopolaron in a Parabolic Quantum Dot
抛物量子点中弱耦合磁极化子的性质
6.
Properties of the Weak-coupling Bound Polaron in a Parabolic Quantum Dot
抛物量子点中弱耦合束缚极化子的性质
7.
Properties of Weak-coupling Impurity Bound Polaron in a Quantum Rod
量子棒中弱耦合杂质束缚极化子的性质
8.
Effect of Spin on the Properties of Weak-coupling Magnetopolaron in Quantum Wire
自旋对量子线中弱耦合磁极化子性质的影响
9.
Influence of Electric Field on the Properties of the Weak-coupling Bound Polaron in the Quantum Well
电场对量子阱中弱耦合束缚极化子性质的影响
10.
Influence of Interaction Between Phonons on Mean Number of Polaron Phonons in Weak-coupling Quantum Dot
声子之间相互作用对弱耦合量子点中极化子内声子平均数的影响
11.
Vibration Frequency and Interaction Energy ofWeak Coupling Magnetoplaron in Parabolic Quantum Dot
抛物量子点中弱耦合磁极化子的振动频率和相互作用能
12.
Temperature Dependence of the Ground State Binding Energy of the Weak-coupling Magnetopolaron in a Quantum Dot Within Magnetic Fields
磁场中量子点内弱耦合磁极化子基态束缚能的温度依赖性
13.
We conduct a theoretical study on the properties of a bound polaron in a quantum well under an electric field using linear combination operator and unitary transformation methods, which are valid in the whole range of electron-LO phonon coupling.
采用线性组合算符及幺正变换方法研究了电场对量子阱弱耦合束缚极化子的性质的影响。
14.
Spin-Polarized Transport Through the Double Quantum Dots System Coupled to Ferromagnetic Leads
耦合于铁磁电极双量子点系统的自旋极化输运
15.
Spin-Polarized Transport of Parallel Double Quantum Dots Coupled to Ferromagnetic Electrodes
耦合于铁磁电极平行双量子点的自旋极化输运
16.
Properties of Strong-Coupling Magnetopolaron in Semiconductor Quantum Dot
半导体量子点中强耦合磁极化子的性质
17.
Properties of Strong-coupling Bound Polaron in an Asymmetric Quantum Dot
非对称量子点中强耦合束缚极化子的性质
18.
The effect of electron-lattice coupling on the nonlinear susceptibility is explained.
说明了电子-晶格耦合对非线性极化的影响.