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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Chiral magnetic effect in protoneutron stars and magnetic field spectral evolution
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Chiral magnetic effect in protoneutron stars and magnetic field spectral evolution

机译:原质子星中的手性磁效应和磁场谱演化

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We investigate the evolution of the chiral magnetic instability in a protoneutron star and compute the resulting magnetic power and helicity spectra. The instability may act during the early cooling phase of the hot protoneutron star after supernova core collapse, where it can contribute to the buildup of magnetic fields of strength up to the order of 10(14) G. The maximal field strengths generated by this instability, however, depend considerably on the temperature of the protoneutron star, on density fluctuations and turbulence spectrum of the medium. At the end of the hot cooling phase the magnetic field tends to be concentrated around the submillimeter to cm scale, where it is subject to slow resistive damping.
机译:我们调查了原质子星中手性磁不稳定性的演化,并计算了产生的磁功率和螺旋度谱。这种不稳定性可能在超新星核坍塌后的热原质子星的早期冷却阶段起作用,在那里它可以促进强度高达10(14)G量级的磁场的建立。这种不稳定性所产生的最大场强但是,它很大程度上取决于原质子星的温度,介质的密度波动和湍流谱。在热冷却阶段结束时,磁场趋向于集中在亚毫米左右,直到厘米级,在该处受到缓慢的电阻阻尼。

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