Quantum gravity phenomenology at the dawn of the multi-messenger era—A review

IF 14.5 2区 物理与天体物理 Q1 PHYSICS, NUCLEAR
A. Addazi , J. Alvarez-Muniz , R. Alves Batista , G. Amelino-Camelia , V. Antonelli , M. Arzano , M. Asorey , J.-L. Atteia , S. Bahamonde , F. Bajardi , A. Ballesteros , B. Baret , D.M. Barreiros , S. Basilakos , D. Benisty , O. Birnholtz , J.J. Blanco-Pillado , D. Blas , J. Bolmont , D. Boncioli , J.D. Zornoza
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引用次数: 218

Abstract

The exploration of the universe has recently entered a new era thanks to the multi-messenger paradigm, characterized by a continuous increase in the quantity and quality of experimental data that is obtained by the detection of the various cosmic messengers (photons, neutrinos, cosmic rays and gravitational waves) from numerous origins. They give us information about their sources in the universe and the properties of the intergalactic medium. Moreover, multi-messenger astronomy opens up the possibility to search for phenomenological signatures of quantum gravity. On the one hand, the most energetic events allow us to test our physical theories at energy regimes which are not directly accessible in accelerators; on the other hand, tiny effects in the propagation of very high energy particles could be amplified by cosmological distances. After decades of merely theoretical investigations, the possibility of obtaining phenomenological indications of Planck-scale effects is a revolutionary step in the quest for a quantum theory of gravity, but it requires cooperation between different communities of physicists (both theoretical and experimental). This review, prepared within the COST Action CA18108 “Quantum gravity phenomenology in the multi-messenger approach”, is aimed at promoting this cooperation by giving a state-of-the art account of the interdisciplinary expertise that is needed in the effective search of quantum gravity footprints in the production, propagation and detection of cosmic messengers.

多信使时代初期的量子引力现象学综述
由于多信使范式,对宇宙的探索最近进入了一个新时代,其特点是通过探测来自众多起源的各种宇宙信使(光子、中微子、宇宙射线和引力波)而获得的实验数据的数量和质量不断增加。它们告诉我们它们在宇宙中的来源以及星系间介质的特性。此外,多信使天文学开启了寻找量子引力现象特征的可能性。一方面,最具能量的事件使我们能够在加速器无法直接达到的能量状态下测试我们的物理理论;另一方面,高能粒子传播过程中的微小效应可能会被宇宙距离放大。经过几十年的理论研究,获得普朗克尺度效应的现象学指示的可能性是追求量子引力理论的革命性一步,但它需要不同物理学家团体(理论和实验)之间的合作。这篇综述是在成本行动CA18108“多信使方法中的量子引力现象学”框架下编写的,旨在通过提供跨学科专业知识的最新描述来促进这种合作,这些专业知识是在宇宙信使的产生、传播和探测中有效寻找量子引力足迹所需要的。
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来源期刊
Progress in Particle and Nuclear Physics
Progress in Particle and Nuclear Physics 物理-物理:核物理
CiteScore
24.50
自引率
3.10%
发文量
41
审稿时长
72 days
期刊介绍: Taking the format of four issues per year, the journal Progress in Particle and Nuclear Physics aims to discuss new developments in the field at a level suitable for the general nuclear and particle physicist and, in greater technical depth, to explore the most important advances in these areas. Most of the articles will be in one of the fields of nuclear physics, hadron physics, heavy ion physics, particle physics, as well as astrophysics and cosmology. A particular effort is made to treat topics of an interface type for which both particle and nuclear physics are important. Related topics such as detector physics, accelerator physics or the application of nuclear physics in the medical and archaeological fields will also be treated from time to time.
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