spin in
- spin in的基本解释
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上床, 睡午觉
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Concretely speaking, using the irreducible tensor theory, we deuced the formulism for fine-structure energies of boron-like atoms in the ground and first excited states, which involves spin-orbit, spin-spin and spin-other-orbit interactions; completing all the angular integrations and spin summations needed, we make the final expression for fine-structure energies of boron-like atoms in the ground and first excited states in a combination of radial integrations. Afterwards, employing the wave functions we got in Chapter Three, we accomplished all the radial integrations and so obtained the fine-structure energies.
具体地说,利用不可约张量理论导出了类硼离子基态以及第一激发态的精细结构的表达式,给出了自旋-轨道、自旋-自旋、自旋-其它轨道相互作用等所涉及的所有角向积分和自旋求和的解析计算方法,完成了角向积分、自旋求和的计算,使类硼离子基态以及第一激发态精细结构能级最终可以表示为径向积分之和;在此基础上利用以前所得到的非相对论性波函数,进一步完成了所有径向积分的计算,从而得到了对应能级的精细结构的理论计算值。
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Afterwards, using the spherical tensor form of many-electron atom Hamilton and the irreducible tensor theory, the relativistic and fine-structure energy correction to the non-relativistic energy of Boron-like atoms in the ground and the first excited states have been further investigated. A theoretically analytic way has been given as to the calculation of all the radial integrations and spin summations, which concern interactions such as orbit-orbit, spin-orbit, spin-spin and spin-other-orbit. Therefore, the whole process of calculating the many- electron atom energy structures has been explicitly revealed and the results are relatively precise and satisfactory.
在此基础上,利用多电子原子哈密顿算符的球张量形式和不可约张量理论,进一步研究了类硼离子基态和第一激发态非相对论能级的相对论修正和精细结构,给出了轨道-轨道、自旋-轨道、自旋-自旋、自旋-其它轨道等相互作用所涉及的所有角向积分和自旋求和的解析计算方法,清晰地展示了多电子原子结构计算的过程,得到了较为精确的理论计算结果。
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We review the recent progress in the research on spin-orbit coupling and intrinsic spin Hall effect in semiconductor microstructures, including a detailed discussion of the physical origin of spin-orbit coupling in semiconductor microstructures and the intrinsic spin Hall effect in narrow-gap semiconductor quantum wells.
本文主要评述和介绍半导体微结构中自旋轨道耦合的研究和最近的研究进展。我们细致地讨论了半导体微结构中自旋轨道耦合的物理起源和窄带隙半导体量子阱中的自旋霍尔效应。
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spin in:辊口
spin hardening 旋转表面淬火法,火焰硬化=>回転焼入れ | spin in 辊口 | spin intensity 旋转强度
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Travelling Spin in P.P:行进旋转(在P. P. )
Chasse to Left 左追步 | Travelling Spin in P.P. 行进旋转(在P. P. ) | Travelling Spin in C.P.P. 行进旋转(在C. P. P. )
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Travelling Spin in C.P.P:行进旋转(在C. P. P. )
Travelling Spin in P.P. 行进旋转(在P. P. ) | Travelling Spin in C.P.P. 行进旋转(在C. P. P. ) | Spanish Line 西班牙舞姿
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Progressive Spin in C.P.P:行进连续转
24.Progressive Spin in P.P从P.P位行进连续转 | 25.Progressive Spin in C.P.P 行进连续转 | 铜牌级Bronze)
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Progressive Spin in P.P:从P.P位行进连续转
23.Chasse Cope斗篷追步 | 24.Progressive Spin in P.P从P.P位行进连续转 | 25.Progressive Spin in C.P.P 行进连续转
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