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1)  Electronic states
电子能态
1.
Electronic states of three-dimensional quantum ring are studied by solving precisely the time-independent Schrdinger equation.
本文通过较精确地求解能量本征方程获得三维量子环的电子能态
2.
The electronic states in spherical shell quantum dot are obtained by solving the Schrodinger equation and a quantum bit is formed by overlying both the ground state ψ000 and excited state ψ020.
通过求解球壳量子点的能量本征方程,得到电子能态,并以两能态叠加构造一个量子比特。
2)  valence electron's energy state
价电子能态
3)  electronic state energies
电子态能量
4)  density of electronic states
电子能态密度
1.
The ground state s density of electronic states and the magnetic properties of V-and Cr-doped zinc-blende CdSe have been investigated by carrying out the first-principles plane-wave pseudopotential method within the generalized gradient approximation.
在共轭梯度近似(GGA)下,采用第一性原理平面波赝势方法,对V和Cr掺杂闪锌矿CdSe半导体的基态电子能态密度和磁性进行了研究。
5)  Energy transfer of electronically excited state
电子激发态传能
6)  solid-state atomic battery
固态原子能电池
补充资料:电子激发态
分子式:
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性质:一个原子或分子的电子能量较其基态时为高时的状态称为电子激发态。产生电子激发态的途径很多,最常用的方法有光激发、热激发等。利用波长与电子激发能相匹配的单色光(如激光)进行激发时,可以较精确地调制分子的电子激发态。

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