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首页> 外文期刊>Nuclear physics, B >Bubble nucleation and growth in very strong cosmological phase transitions
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Bubble nucleation and growth in very strong cosmological phase transitions

机译:在非常强的宇宙相变中气泡成核和生长

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Strongly first-order phase transitions, i.e., those with a large order parameter, are characterized by a considerable supercooling and high velocities of phase transition fronts. A very strong phase transition may have important cosmological consequences due to the departures from equilibrium caused in the plasma. In general, there is a limit to the strength, since the metastability of the old phase may prevent the transition to complete. Near this limit, the bubble nucleation rate achieves a maximum and thus departs from the widely assumed behavior in which it grows exponentially with time. We study the dynamics of this kind of phase transitions. We show that in some cases a gaussian approximation for the nucleation rate is more suitable, and in such a case we solve analytically the evolution of the phase transition. We compare the gaussian and exponential approximations with realistic cases and we determine their ranges of validity. We also discuss the implications for cosmic remnants such as gravitational waves.
机译:强烈的一阶相变,即那些具有大阶数参数的相变,其特征在于相当大的过冷度和高的相变前沿速度。由于等离子体中平衡的偏离,非常强的相变可能会产生重要的宇宙学后果。通常,强度是有限制的,因为旧相的亚稳定性可能会阻止过渡完成。接近此极限,气泡成核速率达到最大值,因此偏离了人们普遍认为的行为,即气泡成核速率随时间呈指数增长。我们研究了这种相变的动力学。我们表明,在某些情况下,成核速率的高斯近似更为合适,并且在这种情况下,我们可以分析地解决相变的演化。我们将高斯近似和指数近似与实际情况进行比较,并确定其有效范围。我们还将讨论对诸如引力波之类的宇宙残余的影响。

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