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Trapped quintessential inflation

机译:受困的典型通胀

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Quintessential inflation is studied using a string modulus as the inflaton-quintessence field. The modulus begins its evolution at the steep part of its scalar potential, which is due to non-perturbative effects (e.g. gaugino condensation). It is assumed that the modulus crosses an enhanced symmetry point (ESP) in field space. Particle production at the ESP temporarily traps the modulus resulting in a brief period of inflation. More inflation follows, due to the flatness of the potential, since the ESP generates either an extremum (maximum or minimum) or a flat inflection point in the scalar potential. Eventually, the potential becomes steep again and inflation is terminated. After reheating the modulus freezes due to cosmological friction at a large value, such that its scalar potential is dominated by contributions due to fluxes in the extra dimensions or other effects. The modulus remains frozen until the present, when it can become quintessence and account for the dark energy necessary to explain the observed accelerated expansion. (c) 2006 Elsevier B.V. All rights reserved.
机译:使用弦模量作为膨胀子-精粹场来研究典型充气。模量在其标量势的陡峭部分开始其演化,这是由于非扰动效应(例如gaugino凝聚)引起的。假定模量在场空间中穿过增强的对称点(ESP)。 ESP上的颗粒产生会暂时捕获模量,从而导致短暂的膨胀。由于电势的平坦性,随之而来的是更多的膨胀,因为ESP在标量电势中产生极值(最大或最小)或平坦拐点。最终,电势再次变陡,通货膨胀终止。在重新加热后,模量由于宇宙摩擦而冻结在一个很大的值,因此其标量势主要由额外尺寸的通量或其他影响引起的贡献所决定。模量一直保持冻结状态,直到现在,它才变得精妙,并解释了观察到的加速膨胀所必需的暗能量。 (c)2006 Elsevier B.V.保留所有权利。

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