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1.
Analysis on Entanglement Properties of Electron Hole Pair for Electron Tunneling Through A Single Square Barrier;
电子-空穴对在势垒隧穿中的纠缠特性分析
2.
rate of generation
半导体中电子和空穴的
3.
Electrons and Holes in Semiconductors
《半导体中的电子和空穴》
4.
Exciton is electron-hole pair held together by their mutual Coulomb interaction.
激子就是由电子和空穴在相互间的库仑力作用下,相互维持在一起的电子--空穴对。
5.
The motion of electrons or holes in semiconductor in electric field.
半导体中电子或空穴在电场中的运动。
6.
Electron-and Hole-spin Relaxations in InAs/GaAs Single Quantum Dots
InAs/GaAs单量子点中电子/空穴自旋弛豫
7.
A valence elect ron can move away f rom it satom, leaving it a hole.
价电子能够脱离其原子给原子留下一个空穴。
8.
Hole- Similar to a positive charge, this is caused by the absence of a valence electron.
空穴-和正电荷类似,是由缺少价电子引起的。
9.
Electric current: Movement of electric charge carriers.
电流:带电亚原子粒子、离子或空穴等荷电粒子的运动。
10.
The process of photoluminescence refers to the radioative recombination of electronhole pairs generated by shining high energy light on a crystal.
光致发光过程就是高能量光子照射到晶体上之后,晶体所产生的电子一空穴对的辐射复合过程。
11.
The Electronic Structures and Transport Properties of Hole-doped LiCoO_2 Materials;
空穴掺杂LiCoO_2体系的电子结构与输运性质
12.
The Coulomb interaction between the electron and the hole is treated accurately by the direct diagonalization of the Hamiltonian matrix.
通过哈密顿量矩阵的对角化,对电子和空穴间的库仑相互作用进行了精确处理.
13.
The other way was to knock a bound electron off a neutral atom creating simultaneously an electron and a hole.
另一种方法是把束膊电子从中性原子中撞出,同时产生电子和空穴。
14.
This equationis based on the hypothesis that the recombination of electron-hole pairs indirect band semiconductors is perfect optical transition without any others.
这公式是基于在直接带半导体中电子—空穴对复合全部是光跃迁的假设的。
15.
Effect of Hole Transporting Materials on Photoluminescence of CdSe Core/Shell Quantum Dots
空穴传输材料对CdSe核壳量子点的荧光影响
16.
Bipolar- Transistors that are able to use both holes and electrons as charge carriers.
双极晶体管-能够采用空穴和电子传导电荷的晶体管。
17.
The density of holes in the base is less than the density of free electrons in the emitter and collector.
基极中空穴的密度小于发射极和集电极中自由电子的密度。
18.
Under application of an electric field, the electron and hole move in opposite directions at different velocities.
在电场的作用下,电子和空穴以不同的速度沿着相反的方向运动。