Strong signature of right-handed circularly polarized photoionization close to the cyclotron line in the atmosphere of magnetic white dwarfs

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
René D. Rohrmann
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引用次数: 0

Abstract

Magnetic fields break the symmetry of the interaction of atoms with photons with different polarizations, yielding chirality and anisotropy properties. The dependence of the absorption spectrum on the polarization, a phenomenon known as dichroism, is present in the atmosphere of magnetic white dwarfs. Its evaluation for processes in the continuum spectrum has been elusive so far due to the absence of appropriate ionization equilibrium models and incomplete data on photoionization cross sections. We combined rigorous solutions to the equilibrium of atomic populations with approximate cross sections to calculate the absolute opacity due to photoionization in a magnetized hydrogen gas. We predict a strong right-handed circularly polarized absorption (χ+) formed blueward of the cyclotron resonance for fields from about 14 to several hundred megagauss. In energies lower than the cyclotron fundamental, this absorption shows a deep trough with respect to linear and left-handed circular polarizations that steepens with the field strength. The jump in χ+ is due to the confluence of a large number of photoionization continua produced by right-handed circularly polarized transitions from atomic states with a nonnegative magnetic quantum number toward different Landau levels.
磁性白矮星大气中接近回旋加速器线的右旋圆极化光电离的强特征
磁场破坏了原子与不同极化光子相互作用的对称性,产生手性和各向异性。吸收光谱对极化的依赖,一种被称为二色性的现象,存在于磁性白矮星的大气中。由于缺乏适当的电离平衡模型和不完整的光电离截面数据,它对连续光谱过程的评价迄今为止一直难以捉摸。我们将原子居群平衡的严格解与近似横截面结合起来,计算磁化氢气中由于光离引起的绝对不透明度。我们预测,在大约14到几百兆高斯的场中,回旋加速器共振向蓝方向形成一个强的右手圆极化吸收(χ+)。在能量低于回旋加速器基波的情况下,这种吸收在线性极化和左旋圆极化方面表现出一个深的波谷,随着场强的增加而变陡。χ+的跳跃是由于从具有非负磁量子数的原子态向不同朗道能级的右旋圆极化跃迁所产生的大量光电离连续体的汇合。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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