超导弦的稳定性

IF 5.5 1区 物理与天体物理 Q1 Physics and Astronomy
Keisuke Harigaya, Xuce Niu, Wei Xue, Fengwei Yang
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引用次数: 0

摘要

我们在经典和量子水平上研究了超导弦作为弦和费米子零模式的束缚态的稳定性。这些超导弦的动力学可以产生一种稳定的构型,称为涡。我们主要关注全局字符串,但大部分讨论可以应用于局部字符串。利用晶格模拟,我们研究了超导弦的经典动力学,并证实它们通过Nambu-Goldstone玻色子辐射松弛到涡构型,没有证据表明会使涡不稳定的超冲。我们探索了费米子零模在弦外的隧穿。我们的经典分析和量子计算都得出了一致的结果:零模式的最大能量明显超过费米子的质量,这与之前的文献相反。此外,我们引入了一个世界表的形式来评估零模式到其他粒子的衰变速率,这些粒子构成了主要的衰变通道。我们还确定了由于弦结构的非绝热变化而触发零模衰减的其他过程。在这些衰减过程中,速率受到弦环曲率的抑制,对于最终状态的大质量具有指数抑制。我们进一步研究了零模电流对弦芯周围轻带电粒子的散射,发现宽的零模波函数可以增强涡旋的稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability of superconducting strings

We investigate the stability of superconducting strings as bound states of strings and fermion zero modes at both the classical and quantum levels. The dynamics of these superconducting strings can result in a stable configuration, known as a vorton. We mainly focus on global strings, but the majority of the discussion can be applied to local strings. Using lattice simulations, we study the classical dynamics of superconducting strings and confirm that they relax to the vorton configuration through Nambu-Goldstone boson radiation, with no evidence of over-shooting that would destabilize the vorton. We explore the tunneling of fermion zero modes out of the strings. Both our classical analysis and quantum calculations yield consistent results: the maximum energy of the zero mode significantly exceeds the fermion mass, in contrast to previous literature. Additionally, we introduce a world-sheet formalism to evaluate the decay rate of zero modes into other particles, which constitute the dominant decay channel. We also identify additional processes that trigger zero-mode decay due to non-adiabatic changes of the string configuration. In these decay processes, the rates are suppressed by the curvature of string loops, with exponential suppression for large masses of the final states. We further study the scattering with light charged particles surrounding the string core produced by the zero-mode current and find that a wide zero-mode wavefunction can enhance vorton stability.

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来源期刊
Journal of High Energy Physics
Journal of High Energy Physics 物理-物理:粒子与场物理
CiteScore
10.30
自引率
46.30%
发文量
2107
审稿时长
1.5 months
期刊介绍: The aim of the Journal of High Energy Physics (JHEP) is to ensure fast and efficient online publication tools to the scientific community, while keeping that community in charge of every aspect of the peer-review and publication process in order to ensure the highest quality standards in the journal. Consequently, the Advisory and Editorial Boards, composed of distinguished, active scientists in the field, jointly establish with the Scientific Director the journal''s scientific policy and ensure the scientific quality of accepted articles. JHEP presently encompasses the following areas of theoretical and experimental physics: Collider Physics Underground and Large Array Physics Quantum Field Theory Gauge Field Theories Symmetries String and Brane Theory General Relativity and Gravitation Supersymmetry Mathematical Methods of Physics Mostly Solvable Models Astroparticles Statistical Field Theories Mostly Weak Interactions Mostly Strong Interactions Quantum Field Theory (phenomenology) Strings and Branes Phenomenological Aspects of Supersymmetry Mostly Strong Interactions (phenomenology).
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