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原子核的影响引起超精细结构。Nuclear effects produce hyperfine structure.
原子核的影响引起超精细结构。Nuclear effects produce hyperfine structure.
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这一初步的结果将有助于我们进一步讨论量子点中电子的自旋退相干过程。This helps us to further investigate the spin decoherence caused by the hyperfine interaction in quantum dots.
研究了在液氦温度下天青釉超精细相互作用参数的变化和参数变化的机制。The variation of the hyperfine interaction parameters and the variable mechanism of the sky-green glaze at liquid helium temperature is studied.
给出了有关超精细参量随时间变化的规律,并对实验研究结果作出了分析与讨论。The relevant hyperfine parameters as a function of annealing time are shown and the result of experimental study is analyzed and discussed in detail.
采用最小二乘拟合,得到了这些能级的磁偶极超精细结构常数A。The observed hyperfine structure spectra are analyzed and the magnetic-dipole hyperfine structure constants A of these levels are obtained by least-squares fits.
通过染料的筛选,固色剂与匀染剂的应用和染色温度影响因素试验,研究了聚酰胺超细纤维合成革的染色。The dye of hyperfine fiber synthetic leather was investigated on the basis of dyestuff selection, application of dying auxiliary agents and different dying conditions.
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观察到非晶合金的晶化温度,磁有序温度和平均磁超精细场有规律性的变化。The regular variation of crystallization temperature, magnetic ordering temperature and average hyperfine magnetic field of the amorphous alloys with Nb content were observed.
采用原子蒸气束激光诱导荧光法测量钆原子的第一激发态的同位素位移及超精细结构、原子跃迁自发辐射的分支比和原子蒸气束的多普勒宽度。The isotope shifts, hyperfine structure, spontaneous emission branch ratio of the first excited level and Doppler width of the atom vapor beam were measured using laser induced fluorescence.
介绍了原子能级的精细结构与超精细结构的产生原理,对研究原子能级精细结构的两个实验作了改进、设计及说明。This article is aimed at introducing the generation principle of fine structure and hyperfine structure of atomic energy level, with its experimental result improved, designed and illustrated.