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Influence of backreaction of electric fields and Schwinger effect on inflationary magnetogenesis

机译:电场反应与施韦格效应对通胀磁生物的影响

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摘要

We study the generation of electromagnetic fields during inflation when the conformal invariance of Maxwell's action is broken by the kinetic coupling f~2(?)F_(μν)F~(μν) of the electromagnetic field to the inflaton field ?. We consider the case where the coupling function f(?) decreases in time during inflation and, as a result, the electric component of the energy density dominates over the magnetic one. The system of equations which governs the joint evolution of the scale factor, inflaton field, and electric energy density is derived. The backreaction occurs when the electric energy density becomes as large as the product of the slow-roll parameter ∈ and inflaton energy density, ρE ~ ∈ρ_(inf). It affects the inflaton field evolution and leads to the scale-invariant electric power spectrum and the magnetic one which is blue with the spectral index n_B = 2 for any decreasing coupling function. This gives an upper limit on the present-day value of observed magnetic fields below 10~(-22) G. It is worth emphasizing that since the effective electric charge of particles e_(eff) = e/f is suppressed by the coupling function, the Schwinger effect becomes important only at the late stages of inflation when the inflaton field is close to the minimum of its potential. The Schwinger effect abruptly decreases the value of the electric field, helping to finish the inflation stage and enter the stage of preheating. It effectively produces the charged particles, implementing the Schwinger reheating scenario even before the fast oscillations of the inflaton. The numerical analysis is carried out in the Starobinsky model of inflation for the powerlike f ∝ a~α and Ratra-type f = exp(β?/Mp) coupling functions.
机译:当通过电磁场的动力耦合F〜2(μl)将电磁场的动力耦合F〜2(μl)对发射场的动力耦合f〜2(μl)对麦克风耦合F〜2(μl)F〜(μl)进行了克服的相符时,研究了通货膨胀期间的电磁场的产生。我们考虑耦合功能F(α)在充气期间的时间耦合函数F(α),结果,能量密度的电气分量在磁性磁场上占主导地位。衍生来控制规模因子,印度电场和电能密度的联合演变的等式系统。当电能密度变得像慢辊参数∈和发射能量密度的产物一样大时,会发生反应。ρe〜∈ρ_(inf)。它影响暴胀场演变和通向尺度不变电功率谱和磁性其中之一是蓝色与光谱指数N_B = 2为任何减小耦合功能。这给出了低于10〜(-22)G的观察到磁场的当代值的上限。值得强调的是,由于耦合功能抑制了粒子E_(EFF)= E / F的有效电荷当inclaton字段接近其潜力的最小值时,Schwinger效应仅在通胀的后期变得重要。 Schwinger效果突然降低了电场的价值,有助于完成通胀阶段并进入预热阶段。它有效地产生带电粒子,即使在发入的快速振荡之前,也能够实施Schwinger再加热场景。数值分析是在高潮Fαa〜α和ratra型F = exp(β-/ MP)耦合功能的汽笔的铜绿素普查模型中进行。

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  • 来源
    《Physical review, D 》 |2018年第1期| 共19页
  • 作者单位

    Institute of Physics Laboratory for Particle Physics and Cosmology école Polytechnique Fédérale de Lausanne CH-1015 Lausanne Switzerland;

    Physics Faculty Taras Shevchenko National University of Kyiv 64/13 Volodymyrska Street 01601 Kyiv Ukraine;

    Physics Faculty Taras Shevchenko National University of Kyiv 64/13 Volodymyrska Street 01601 Kyiv Ukraine;

    Physics Faculty Taras Shevchenko National University of Kyiv 64/13 Volodymyrska Street 01601 Kyiv Ukraine;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学 ; 场论 ;
  • 关键词

    electric; backreaction; minimum;

    机译:电气;反应;最低限度;

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