里德伯

  • 网络rydberg;J. R. Rydbery;J.Rydberg
里德伯里德伯
  1. Na原子高里德伯态的波函数和振子强度

    Wave functions for and oscillator strengths between high Rydberg states of Na atom

  2. 以Ne原子为联合原子的系列分子里德伯能级结构

    Electronic structures of Rydberg states for molecules with ne as their united atoms

  3. 里德伯Cs原子与CCl4分子的碰撞电离研究

    The study of collisional ionization properties of Rydberg Cs atoms with CCl 4 molecules

  4. Rb原子4p和5s次壳层双激发里德伯态的研究

    The Doubly Excited Rydberg States of Rb Atom 4p and 5s Subshells

  5. Rb原子里德伯态的ι混合跃迁截面及标度律

    The ι - mixing cross section of Rydberg states of atomic Rb and the scaling law

  6. 为了开展里德伯原子实验研究,我们首先研制了热离子二极管,利用无多普勒双光子激光光谱方法,测量了铷原子nD和nS高里德伯态。

    A thermionic diode has been developed for experimental research of Rydberg atoms , Rb nD and nS high Rydberg states were measured with Doppler-free two-photon spectroscopy .

  7. 实验研究表明,在高里德伯态氢原子与D2的散射中,非弹性散射和化学反应散射都是重要的.在非弹性散射过程中,氘分子的核自旋是守恒的。

    Experimental results show that both inelastic and reactive scattering are significant , and that nuclear spin is conserved in the former process .

  8. 结果表明,对NHn(CH3)4-n系列分子,n越小,即甲基越多,里德伯分子越不稳定。

    The results indicate that for NHn ( CH ) 4-n series , the less n is , that is to say , the more the methyl group , the worse stable it is .

  9. 用统计热力学方法在200~1100K范围内计算了某些大里德伯(Rydberg)分子的热力学函数以及电离过程的热力学函数改变值;

    He changes of thermodynamic functions for ionization process of some large Rydberg molecules are calculated with statistical thermodynamic method over the temperature range of 200 ~ 1100K .

  10. 某些大里德伯分子的热力学函数及其热稳定性

    Thermodynamic Functions and Thermal Stability of Some Large Rydberg Molecules

  11. 波尔氢原子光谱理论的里德伯公式

    On Rydberg Formula in Bohr Model of the Hydrogen Atom

  12. 起初目标集中在里德伯原子与毫米波的相互作用。

    Initially focused on rydberg atoms and millimeter wave interaction .

  13. 锂原子里德伯态能级的精细结构分裂

    The fine structure splitting of the level of lithium in Rydberg states

  14. 运用标度势探讨卤化碱电荷转移态的里德伯特性

    Investigation on the Rydberg properties of alkali-halide charge-transfer states using the scaled potentials

  15. 交叉电磁场中的原子里德伯态

    The Rydberg states of atoms in crossed electric-magnetic fields

  16. 分子里德伯态的电子能级结构&一些小分子及分子离子的里德伯能级结构

    Electronic structure of molecular Rydberg states of some small molecules and molecular ion

  17. 而在有关能量与里德伯常数的表达式中,采用折合质量确实是正确的。

    In energy formula , it is indeed correct to use the reduced mass .

  18. 锂原子里德伯态能级的位移公式

    Level Shift Formula of Lithium in Rydberg States

  19. 由钠原子光谱测定里德伯常数

    Determine the Rydberg constant with sodium atomic spectra

  20. 双光子激发NO分子里德伯态H~('2)Ⅱ~-的光谱研究

    Spectroscopy of H ~ 2 Π - Rydberg states of NO molecular by two-photon excitation

  21. 原子相干对里德伯原子稳定性的影响

    Influence of Atomic Coherence on Rydberg-Atom Stabilization

  22. 用不同的方法导出里德伯常量

    Deducing Rydberg constant in different ways

  23. NO分子里德伯态O~('2)Ⅱ~-的双子光激发谱

    Two-photon excitation spectrum of Rydberg state o ~ ( '2 )ⅱ ~ - of no molecule

  24. 里德伯常量的测量

    Measurement of the Rydberg constant

  25. 高里德伯态氢原子与氢分子的全量子态分辨的散射动力学研究:费米模型的精确性

    Full quantum state resolved scattering dynamics of high Rydberg H atom with hydrogen molecule : the validity of Fermi model

  26. 分别以角动量量子化条件的基本假设和对应原理准则导出里德伯常量,并将两种方法的结果与实验值相比较,其结果具有一致性。

    Rydberg constant can be deduced from hypothesis based on the condition of angular momentum quantization and from correspondence principle . In comparison with the experimental value , the results of the two methods are compared and show that they agree with each other .