Then, we study the dynamics of a single electron spin in a DQD and its readout via QPC.
接着,我们重点研究了在耦合双量子点系统中单个电子自旋的动力学及如何通过运用一个量子点接触器件读出它的白旋状态。
参考来源 - 耦合双量子点器件中电子自旋态的量子测量The influence of interface growth interruption on electron spin life timeτin GaAs/AlGaAs (111) quantum wells (QWs) grown by solid source molecular beam epitaxy (SSMBE) has been investigated by room temperature photoluminescence spectra and time-resolved Kerr rotation spectroscopy (TRKR).
3.通过时间分辨Kerr旋转谱研究了界面生长中断对量子阱内电子自旋寿命τ的影响。
参考来源 - GaAs(111)面量子阱材料的生长及其光电特性的研究·2,447,543篇论文数据,部分数据来源于NoteExpress
The electron spin dependent tunneling and susceptibility are studied.
研究了电子的自旋相关的隧穿和极化。
The influence of electron spin on the properties of the strong coupling surf ace magnetopolaron was discussed.
讨论了电子自旋对强耦合表面磁极化子性质的影响。
Electron spin is a fundamental property, in addition to basic electrical charge, that can be used in electronic circuits.
电子旋转和基本的电荷都是一种基本属性,被用于电子电路中。
And this spin is an intrinsic quality of the electron, it's a property that is intrinsic in all particles, just like we would say mass is intrinsic or charge is intrinsic.
自旋是电子的本征量,它是所有粒子的本征性质,就像我们说质量是本征的或者电荷是本征的。
So what that means is that we're limited in any atom to having two electrons per orbital, right, because for any orbital we can either have a spin up electron, a spin down electron, or both.
这意味着在一个原子内,每个轨道上可以有两个电子,对吧,因为对任何轨道,我们可以有自旋向上或者自选向下或者两者都有。
And that the fact that it split into two was telling them that there must be some new property to the electron, and what we call that now is either being spin up or spin down.
它能一分为二的,事实告诉我们,电子一定有某种新的性质,我们叫它自旋向上或者自旋向下。
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