首页> 外文期刊>Astronomy and astrophysics >Hydrogen ionization equilibrium in magnetic fields
【24h】

Hydrogen ionization equilibrium in magnetic fields

机译:磁场中的氢电离平衡

获取原文
           

摘要

We assess the partition function and ionization degree of magnetized hydrogen atoms at thermodynamic equilibrium for a wide range of field intensities, B ≈ 10~(5)–10~(12)G. Evaluations include fitting formulae for an arbitrary number of binding energies, the coupling between the internal atomic structure and the center-of-mass motion across the magnetic field, and the formation of the so-called decentered states (bound states with the electron shifted from the Coulomb well). Non-ideal gas effects are treated within the occupational probability method. We also present general mathematical expressions for the bound state correspondence between the limits of zero-field and high-field. This let us evaluate the atomic partition function in a continuous way from the Zeeman perturbative regime to very strong fields. Results are shown for conditions found in atmospheres of magnetic white dwarf (MWD) stars, with temperatures T ≈ 5000–80 000 K and densities ρ ≈ 10~(?12)–10~(?3)g cm~(3). Our evaluations show a marked reduction of the gas ionization due to the magnetic field in the atmospheres of strong MWDs. We also found that decentered states could be present in the atmospheres of currently known hot MWDs, giving a significant contribution to the partition function in the strongest magnetized atmospheres.
机译:我们在热力学平衡下评估磁化氢原子的分区功能和电离程度,用于各种场强度,B≈10~(5)-10〜(12)g。评估包括用于任意数量的结合能量的拟合公式,内部原子结构与跨越磁场的质量中心运动之间的耦合,以及形成所谓的偏心状态(电电子偏移的绑定状态库仑嘛)。在职业概率方法中处理非理想的气体效应。我们还为零场和高场的极限之间的绑定状态对应提供了一般的数学表达式。这让我们以连续的方式从塞曼扰动制度到非常强大的领域以连续的方式评估原子分区函数。结果显示在磁性白矮星(MWD)恒星大气中发现的条件,温度t≈5000-80000 k和密度ρ≈10〜(?12)-10〜(α3)g cm〜(3)。由于强大MWDS的大气中的磁场,我们的评估显示了由于磁场而显着的气体电离。我们还发现,在当前已知的热MWDS的大气中,令人遗憾的状态可能存在于最强大的磁化气氛中的分区功能的显着贡献。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号