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Emergent coherent structures in nonequilibrium field theory.

机译:非平衡场理论中的新兴相干结构。

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摘要

In this thesis we study the properties of time-dependent, nontopological configurations and their effect on the macroscopic properties of a system described by a nonlinear field theory. These structures seem to be ubiquitous in relativistic field theories with symmetry breaking scenarios and since they drastically change the power spectrum, understanding their properties and lifetimes is essential for characterization of the equilibration time scales of a given system.;We extend 2d results on the effect of these emergent structures to the decay rate of a false vacuum to 3d and confirm that these time-dependent structures modify the decay, after a quench, to a power law in pure scalar theories. Adding gauge fields, we present new time dependent nontopological solutions in the 2d Abelian Higgs model which show the creation of oscillons from vortex antivortex annihilations. A phase transition in configuration space is then constructed from the stability properties of these oscillons in parameter space. Similarly, in 3 d we show that oscillons may be formed through toroidal ux-tube annihilations.;Finally, these properties are shown to also apply to more complex situations, such as the condensed proton-neutron system, which exhibits all the previous oscillon results as well as a new nontrivial vortex-vortex bound state.;To understand the mechanisms of their creation we rely on large scale computations to solve the fully nonlinear equations of motion. By using both Langevin thermalization techniques and various ansatz we find information about both the individual formation and stability properties of these structures and their effect on global observables such as the decay rate of a metastable vacuum. Each of these aspects contains surprises and radical departures from the linearized theories. We also show examples of how these structures can be examined in momentum space from computing several correlation functions.
机译:在本文中,我们研究了时变,非拓扑结构的性质及其对非线性场理论描述的系统宏观性质的影响。这些结构似乎在相对论场论中具有对称破缺场景,并且由于它们会极大地改变功率谱,因此了解它们的特性和寿命对于表征给定系统的平衡时间尺度至关重要。这些新兴结构对虚假真空衰减到3d的衰减率的影响,并证实这些时间相关的结构在淬灭后将衰减修改为纯标量理论中的幂定律。添加标尺场,我们在二维Abelian Higgs模型中提出了新的时变非拓扑解,该解显示了通过涡旋反涡旋an灭产生的振荡子。然后,由这些摆式振子在参数空间中的稳定性能来构造配置空间中的相变。同样,在3 d内,我们证明了可通过环形ux管an灭形成振荡子;最后,这些特性还显示出也适用于更复杂的情况,例如凝聚质子中子系统,该系统显示了以前所有的振荡子结果;以及新的非平凡涡旋-涡旋束缚态。;要了解它们的产生机理,我们依靠大规模计算来求解运动的完全非线性方程。通过同时使用Langevin热化技术和各种ansatz,我们可以找到有关这些结构的单独形成和稳定性以及它们对整体可观测物的影响的信息,例如亚稳态真空的衰减率。这些方面中的每一个都包含来自线性化理论的惊奇和根本性偏离。我们还展示了如何通过计算几个相关函数来在动量空间中检查这些结构的示例。

著录项

  • 作者单位

    Dartmouth College.;

  • 授予单位 Dartmouth College.;
  • 学科 Physics Theory.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 261 p.
  • 总页数 261
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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