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耦合常数 meaning in Chinese

coupling constant

Examples

  1. These effective coupling constants of mesons embody the feature of the dbhf results , such as short - range correlations and the structure of isospin
    和。介子密度依赖的耦合常数,然后,在不对称系数p 0
  2. In the second chapter , we divide the polaron into two kinds by the coupling constant . one is big polaron and the other is small polaron
    在第二章中,我们通过对耦合常数大小,把极化子划分为大极化子和小极化子。
  3. Finally , obtain that increasing the absolute value of j increases the concurrence for a given t , but the concurrence decreases with the increase of temperature until it reaches the critical value of t , and becomes zero
    结果表明:对于一定的温度,耦合常数的增加能够增加纠缠度,但是纠缠度却随着温度的增加而减小,直到临界温度时纠缠度为零。
  4. Here , through expanding the nonlinear coupling constant , we have discussed this mechanism . in addition , we find that the phase transition at high temperature in qhd - i model has been suppressed in zm model
    本文通过展开非线性耦合常数,并逐阶求解进行分析,讨论了这一改善的机制,并发现qhd i模型在高温下的相变机制在zm模型中遭到了抑制
  5. A significant difference on the scalar self - energy and effective mass of neutrons in asymmetric nuclear matter , especially in neutron matter , is observed . the difference would result in an unreasonable sigh of the extracted effective couplings for isovector mesons
    利用这样的耦合常数在rmf近似下计算的核物质的结合能与dbhf结果会有偏离,因而得到的核状态方程也会有偏离,如在饱和点处结合能有小于2的偏差。
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Related Words

  1. 不良耦合
  2. 耦合场
  3. 潮汐耦合
  4. 将耦合
  5. 耦合效应
  6. 耦合变压器
  7. 耦合取景器
  8. 耦合损失
  9. 紧耦合
  10. 去耦合
  11. 耦合场
  12. 耦合场矢量
  13. 耦合程度
  14. 耦合程序
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