用r对称的大尺度希格斯膨胀理论探索原始黑洞和引力波

IF 4.3 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Physics Letters B Pub Date : 2025-02-01 DOI:10.1016/j.physletb.2024.139229
Nadir Ijaz, Mansoor Ur Rehman
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引用次数: 0

摘要

本研究探讨了在无尺度超重力框架下r对称希格斯暴胀的实现,旨在阐明一类GUT模型中原始黑洞和可观测引力波的形成。我们探索了在混合暴胀框架中超慢滚动阶段的可能性,在这个框架中,古特希格斯场主要扮演暴胀的角色。标量功率谱的放大产生了标量诱导引力波和原始黑洞的产生。预测的随机引力波背景落在现有和即将到来的引力波探测器的灵敏度范围内,而原始黑洞具有解释暗物质丰富的潜力。此外,我们强调了首阶不可重整项在实现与最新实验数据一致的暴胀观测值的超势中的意义。此外,作为原始引力波的关键测量指标,张量-标量比的预测范围位于未来在宇宙微波背景数据中寻找b模偏振模式的实验观测窗口内。
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Exploring primordial black holes and gravitational waves with R-symmetric GUT Higgs inflation
This study investigates the realization of R-symmetric Higgs inflation within the framework of no-scale-like supergravity, aiming to elucidate the formation of primordial black holes and observable gravitational waves within a class of GUT models. We explore the possibility of an ultra-slow-roll phase in a hybrid inflation framework, where the GUT Higgs field primarily takes on the role of the inflaton. The amplification of the scalar power spectrum gives rise to scalar-induced gravitational waves and the generation of primordial black holes. The predicted stochastic gravitational wave background falls within the sensitivity range of existing and upcoming gravitational wave detectors, while primordial black holes hold the potential to explain the abundance of dark matter. Furthermore, we highlight the significance of the leading-order nonrenormalizable term in the superpotential of achieving inflationary observables consistent with the latest experimental data. Additionally, the predicted range of the tensor-to-scalar ratio, a key measure of primordial gravitational waves, lies within the observational window of future experiments searching for B-mode polarization patterns in cosmic microwave background data.
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来源期刊
Physics Letters B
Physics Letters B 物理-物理:综合
CiteScore
9.10
自引率
6.80%
发文量
647
审稿时长
3 months
期刊介绍: Physics Letters B ensures the rapid publication of important new results in particle physics, nuclear physics and cosmology. Specialized editors are responsible for contributions in experimental nuclear physics, theoretical nuclear physics, experimental high-energy physics, theoretical high-energy physics, and astrophysics.
期刊最新文献
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