论文标题

全息自然

Holographic Naturalness

论文作者

Addazi, Andrea

论文摘要

全息自然性(HN)是宇宙中宇宙常数(CC)和HIGGS层次结构(HH)的新范式。受全息原理的启发,并受到(a)DS/CFT对应关系的启发,我们详细介绍了“真空”中基本固有障碍和温度的可能性和宇宙学后果。我们假设零真空熵由大量的量子发田(“ Hairons”)提供。时空中的量子hiron气体诱导标准模型(SM)粒子部门的有效分解效果。这导致了对CC和HH的紫外线发散贡献的熵重新解释:我们将表明,在这两种情况下,Hairon insamble上的大量重新散布都抑制了任何辐射不稳定性。 CC和HH问题是有意识的观察者所设想的,对SM测试的信息有限访问:这两个问题均起源于我们对隐藏熵在时空中本质上存储的无知。 HN建议在粒子物理学可观察物(例如有效的CPT,单位性和违规)中寻找有效的破坏性效应。关于HH,HN不会引入TEV规模的任何新粒子或相互作用:在LHC和任何未来与Higgs UV在威尔逊式意义上完成有关的签名,我们不希望任何签名。

The Holographic Naturalness (HN) is a new paradigm towards an explanation of the Cosmological Constant (CC) and the Higgs Hierarchy (HH) in the Universe. Motivated by the Holographic Principle, and inspired by the (A)dS/CFT correspondence, we elaborate on the possibility and on the cosmological consequences of a fundamental intrinsic disorder and temperature in "vacuo". We postulate that the zero vacuum entropy is provided by a large number of quantum hair fields, the "hairons". The quantum hairon gas in space-time induces an effective decoherence effect to the Standard Model (SM) particle sector. This is leading to an entropic reinterpretation of UV divergent contributions to CC and HH: we will show that, in both the cases, the large number of re-scatterings on the hairon ensamble suppresses any radiative instabilities. The CC and HH problems are illusions envisaged by a conscious observer, having access on the limited amount of informations from SM tests: both the issues are originated from our ignorance of the hidden entropy intrinsically stored in the space-time. The HN suggests to search for effective decoherence effects in particle physics observables such as effective CPT, Unitarity and Energy violations. Regarding the HH, the HN does not introduce any new particles or interactions around the TeV-scale: we do not expect for any signatures, at LHC and any future high energy colliders, related to the Higgs UV completion in a Wilsonian sense.

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