论文标题
部分可观测时空混沌系统的无模型预测
Pinching instabilities in superconducting strings
论文作者
论文摘要
超导宇宙弦可以在参数空间的某些区域表现出纵向,捏合不稳定性。我们使用薄弦近似(TSA)对这种不稳定性的发作进行预测,并进行了改进的分析,该分析仍然适用于TSA分解的小波长扰动。我们使用扰动字符串的模拟来评估TSA的准确性,测试我们的新分析的预测,并证明了对文献中先前方法的改进。值得注意的是,看起来不稳定性通常是比以前预期的更大的磁条范围存在的,并且我们显示了电弦中捏合不稳定性的例子。但是,我们的仿真和预测都同意,手性极限附近的字符串没有捏障,我们的结果尤其支持我们先前发表的说法,即如果沃尔顿足够大,沃尔顿可以稳定在所有经典的扰动中。
Superconducting cosmic strings can exhibit longitudinal, pinching instabilities in some regions of the parameter space. We make predictions about the onset of this instability using the thin string approximation (TSA) and develop an improved analysis that remains applicable for small wavelength perturbations, where the TSA breaks down. We use simulations of perturbed strings to assess the accuracy of the TSA, test the predictions of our new analysis and demonstrate an improvement over previous methods in the literature. Notably, it appears that the instabilities are typically present for a larger range of magnetic strings than previously expected, and we show examples of pinching instabilities also occurring in electric strings. However, both our simulations and predictions agree that strings near the chiral limit are free from pinching instabilities and in particular our results support our previously published claim that vortons can be stable to all classical perturbations if they are sufficiently large.