论文标题
早期宇宙重组之前的原始电场
Primordial electric fields before recombination in the early Universe
论文作者
论文摘要
这项工作是关于原始电磁场的先前研究的补充。在这项工作中,讨论了三个重要的问题:原始电场的演变,在重组之前的血浆中的电和粒子密度的孤子,及其对宇宙微波背景的功率谱的影响。详细的计算表明,原始电场会随着大规模和小规模的兰道阻尼效应而消散,并且对频谱没有影响。而在重组之前,存在在血浆中稳定传播的孤立波,其速度明显慢于重型声音振荡,仅在极小的规模上工作。另一方面,孤子的幅度是如此弱,以至于在巴里昂声学振荡的阶段只有显着的贡献,因此仅存在有关频谱上这种电孤独波的信息。总之,作为关于宇宙学的相关专着,忽略电磁场(至少电场)是对宇宙微波背景的计算的合理处理。然而,质子密度波动显示了KDV方程的一种形式,而其传播作为稳定的孤立波,使波动起源的可能性促进了星系的产生和演变。
This work is a supplement on the previous research about primordial electromagnetic fields. In this work, three important problems are discussed: the evolution of primordial electric fields, the electric and particle densities' solitons in plasma before recombination and their influences on the power spectra of cosmic microwave background. Detailed computations show that the primordial electric fields dissipate by Landau damping effect on both large scale and small scale and there is no impact on the spectrum. While, before recombination, there exist solitary waves stably propagating in plasma whose speed is significantly slower than that of baryonic acoustic oscillations, working only at extremely small scale. On the other hand, the amplitude of solitons is so weak that only a significantly small contribution on the phase of baryon acoustic oscillations, so there merely exist the messages about such electric solitary waves on the spectrum. In a word, as relevant monographs on cosmology, neglecting the electromagnetic fields (electric fields at least) is a reasonable treatment on the calculations of cosmic microwave background. However, the protonic density fluctuations show a form of KdV equation while its propagation as a stable solitary wave, leading a probability to the origin of fluctuation promoting the generation and evolution of galaxies.