1) g-factor
g-因数,朗德因子,偶极相关因子
2) Landé g-factor
朗德g因子
1.
Observations of the relative intensity of the Zeeman effect of Hg and measurement of the Landé g-factor;
Hg的Zeeman效应相对强度实验观察与朗德g因子测量
2.
This paper Compares the normal Zeeman effect and abnormal Zeenman effect by three aspects:the strong or weak magnetic field,the value of Landé g-factor and the quantum mechanics perturbation theory and reveals the distinction connection between normal Zeeman effect and abnormal Zeenman effect.
从磁场的强弱、朗德g因子取值、量子力学微扰论等三个方面对正常塞曼效应和反常塞曼效应进行了比较,揭示了正常塞曼效应和反常塞曼效应之间的区别和联系。
3) Lande g-factor
朗德g因子
1.
A method for measuring the Lande g-factor by Zeeman effect experiment
用塞曼效应实验测量朗德g因子
2.
On the basis of the result of Zeeman Effect experimental and from the angle of electron spin,it presents the rightness by using L(L+1),S(S+1),J(J+1)to replace L2 、S2 、J2 respectively in Lande g-factor,and compares with the normal and abnormal Zeeman effect according to Lande g-factor value to reveal their differences and relations.
在塞曼效应实验结果的基础上,从电子自旋的角度出发,用量子力学的观点对塞曼效应中能级及谱线的分裂情况进行解释;指出朗德g因子中用L(L+1)、S(S+1)、J(J+1)分别替代L2、S2、J2的正确性,并从朗德g因子的取值对正常塞曼效应和反常塞曼效应进行比较,对它们的区别与联系加以揭示。
4) g-factor
偶极相关因子
5) Landé g_factor
朗德g因数
1.
When measuring Landé g_factor of rubidium(Rb) atom,many resonance frequencies are obtained.
大学物理实验室中测量铷的朗德g因数时,测得多个共振频率。
补充资料:朗德因子
对于多电子的自由原子,而且是非重原子,其电子的总自旋角动量,总轨道角动量,通过"L-S耦合"形成总角动量J=L+s,对应于总角动量的量子数J可表示为:
J=L+S,L+S-1,...,|L-S|式中L和S分别是电子的总轨道角动量量子数和总自旋角动量量子数。伴随总角动量J有对应的总磁矩μJ,二者的关系为:
式中gJ为朗德因子;β为玻尔磁子。对于2S+1LJ的谱项,朗德因子为:
J=L+S,L+S-1,...,|L-S|式中L和S分别是电子的总轨道角动量量子数和总自旋角动量量子数。伴随总角动量J有对应的总磁矩μJ,二者的关系为:
式中gJ为朗德因子;β为玻尔磁子。对于2S+1LJ的谱项,朗德因子为:
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