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Modeling the evolution of the elements in the Milky Way is a multidisciplinary and challenging task. In addition to simulating the 13 billion years evolution of our Galaxy, chemical evolution simulations must keep track of the elements…

We briefly review the main results of the IceCube Neutrino Observatory one decade after the discovery of cosmic neutrinos. We emphasize the importance of multimessenger observations, most prominently for the discovery of neutrinos from our…

High Energy Astrophysical Phenomena · Physics 2026-05-04 Ke Fang , Francis Halzen

We have estimated fluxes of neutrinos and gamma-rays that are generated from decays of charged and neutral pions from a pulsar surrounded by supernova ejecta in our galaxy, including an effect that has not been taken into consideration,…

Astrophysics · Physics 2009-11-10 S. Nagataki

The IceCube neutrino observatory measures the diffuse flux of high-energy astrophysical neutrinos by means of various techniques, and there exists a mild tension between spectra obtained in different analyses. The spectrum derived from…

High Energy Astrophysical Phenomena · Physics 2023-02-16 Kirill Riabtsev , Sergey Troitsky

We analyze the possibility of probing non-standard neutrino interactions (NSI, for short) through the detection of neutrinos produced in a future galactic supernova (SN).We consider the effect of NSI on the neutrino propagation through the…

High Energy Physics - Phenomenology · Physics 2008-11-26 A. Esteban-Pretel , R. Tomàs , J. W. F. Valle

The IceCube Neutrino Observatory has observed a sample of high purity, primarily atmospheric, muon neutrino events over 11 years from all directions below the horizon, spanning the energy range 500 GeV to 100 TeV. While this sample was…

High Energy Astrophysical Phenomena · Physics 2025-07-21 Alex Wen

The hypothesis of a PeVatron in the Galactic Center, emerged with the recent {\gamma}-ray measurements of H.E.S.S., motivates the search for neutrinos from this source. The effect of {\gamma}-ray absorption is studied: at the energies…

High Energy Astrophysical Phenomena · Physics 2017-03-08 Silvia Celli , Andrea Palladino , Francesco Vissani

The neutrino burst from a galactic supernova can help determine the neutrino mass hierarchy and $\theta_{13}$, and provide crucial information about supernova astrophysics. Here we review our current understanding of the neutrino burst,…

High Energy Physics - Phenomenology · Physics 2008-11-26 Amol Dighe

We argue that the reflection of relic neutrinos from the surface of the Earth results in a significant local $\nu-\bar{\nu}$ asymmetry, far exceeding the expected primordial lepton asymmetry. The net fractional electron neutrino number…

High Energy Physics - Phenomenology · Physics 2023-03-15 Asimina Arvanitaki , Savas Dimopoulos

A precise and model-independent determination of the neutron distribution radius $R_{\rm n}$ and thus the neutron skin thickness $R_{\rm skin}$ of atomic nuclei is of fundamental importance in nuclear physics, particle physics and…

Nuclear Theory · Physics 2023-06-16 Xu-Run Huang , Lie-Wen Chen

We review a new interdisciplinary field between Geology and Physics: the study of the Earth's geo-neutrino flux. We describe competing models for the composition of the Earth, present geological insights into the make up of the continental…

Geophysics · Physics 2015-06-17 G. Bellini , A. Ianni , L. Ludhova , F. Mantovani , W. F. McDonough

RES-NOVA is a new proposed experiment for the investigation of astrophysical neutrino sources with archaeological Pb-based cryogenic detectors. RES-NOVA will exploit Coherent Elastic neutrino-Nucleus Scattering (CE$\nu$NS) as detection…

The emission of particles from black holes created in the early Universe has detectable astrophysical consequences. The most stringent bound on their abundance has been obtained from the absence of a detectable diffuse flux of 100 MeV…

High Energy Physics - Phenomenology · Physics 2016-09-01 Francis Halzen , Bettina Keszthelyi , Enrique Zas

Predicting the flavor composition of neutrinos from supernovae is a challenging task, primarily due to the high neutrino densities at their core. In such an environment, neutrino self-interactions give rise to collective effects that have…

High Energy Physics - Phenomenology · Physics 2025-06-03 Antonio Capanema , Yago Porto , Maria Manuela Saez

Detecting the antineutrinos emitted by the decay of radioactive elements in the mantle and crust could provide a direct measurement of the total abundance of uranium and thorium in the Earth. In calculating the antineutrino flux at specific…

Nuclear Experiment · Physics 2015-06-26 Casey G. Rothschild , Mark C. Chen , Frank P. Calaprice

The Jiangmen Underground Neutrino Observatory (JUNO), a 20 kton multi-purpose underground liquid scintillator detector, was proposed with the determination of the neutrino mass hierarchy as a primary physics goal. It is also capable of…

Instrumentation and Detectors · Physics 2016-02-02 Fengpeng An , Guangpeng An , Qi An , Vito Antonelli , Eric Baussan , John Beacom , Leonid Bezrukov , Simon Blyth , Riccardo Brugnera , Margherita Buizza Avanzini , Jose Busto , Anatael Cabrera , Hao Cai , Xiao Cai , Antonio Cammi , Guofu Cao , Jun Cao , Yun Chang , Shaomin Chen , Shenjian Chen , Yixue Chen , Davide Chiesa , Massimiliano Clemenza , Barbara Clerbaux , Janet Conrad , Davide D'Angelo , Herve De Kerret , Zhi Deng , Ziyan Deng , Yayun Ding , Zelimir Djurcic , Damien Dornic , Marcos Dracos , Olivier Drapier , Stefano Dusini , Stephen Dye , Timo Enqvist , Donghua Fan , Jian Fang , Laurent Favart , Richard Ford , Marianne Goger-Neff , Haonan Gan , Alberto Garfagnini , Marco Giammarchi , Maxim Gonchar , Guanghua Gong , Hui Gong , Michel Gonin , Marco Grassi , Christian Grewing , Mengyun Guan , Vic Guarino , Gang Guo , Wanlei Guo , Xin-Heng Guo , Caren Hagner , Ran Han , Miao He , Yuekun Heng , Yee Hsiung , Jun Hu , Shouyang Hu , Tao Hu , Hanxiong Huang , Xingtao Huang , Lei Huo , Ara Ioannisian , Manfred Jeitler , Xiangdong Ji , Xiaoshan Jiang , Cecile Jollet , Li Kang , Michael Karagounis , Narine Kazarian , Zinovy Krumshteyn , Andre Kruth , Pasi Kuusiniemi , Tobias Lachenmaier , Rupert Leitner , Chao Li , Jiaxing Li , Weidong Li , Weiguo Li , Xiaomei Li , Xiaonan Li , Yi Li , Yufeng Li , Zhi-Bing Li , Hao Liang , Guey-Lin Lin , Tao Lin , Yen-Hsun Lin , Jiajie Ling , Ivano Lippi , Dawei Liu , Hongbang Liu , Hu Liu , Jianglai Liu , Jianli Liu , Jinchang Liu , Qian Liu , Shubin Liu , Shulin Liu , Paolo Lombardi , Yongbing Long , Haoqi Lu , Jiashu Lu , Jingbin Lu , Junguang Lu , Bayarto Lubsandorzhiev , Livia Ludhova , Shu Luo , Vladimir Lyashuk , Randolph Mollenberg , Xubo Ma , Fabio Mantovani , Yajun Mao , Stefano M. Mari , William F. McDonough , Guang Meng , Anselmo Meregaglia , Emanuela Meroni , Mauro Mezzetto , Lino Miramonti , Thomas Mueller , Dmitry Naumov , Lothar Oberauer , Juan Pedro Ochoa-Ricoux , Alexander Olshevskiy , Fausto Ortica , Alessandro Paoloni , Haiping Peng , Jen-Chieh Peng , Ezio Previtali , Ming Qi , Sen Qian , Xin Qian , Yongzhong Qian , Zhonghua Qin , Georg Raffelt , Gioacchino Ranucci , Barbara Ricci , Markus Robens , Aldo Romani , Xiangdong Ruan , Xichao Ruan , Giuseppe Salamanna , Mike Shaevitz , Valery Sinev , Chiara Sirignano , Monica Sisti , Oleg Smirnov , Michael Soiron , Achim Stahl , Luca Stanco , Jochen Steinmann , Xilei Sun , Yongjie Sun , Dmitriy Taichenachev , Jian Tang , Igor Tkachev , Wladyslaw Trzaska , Stefan van Waasen , Cristina Volpe , Vit Vorobel , Lucia Votano , Chung-Hsiang Wang , Guoli Wang , Hao Wang , Meng Wang , Ruiguang Wang , Siguang Wang , Wei Wang , Yi Wang , Yi Wang , Yifang Wang , Zhe Wang , Zheng Wang , Zhigang Wang , Zhimin Wang , Wei Wei , Liangjian Wen , Christopher Wiebusch , Bjorn Wonsak , Qun Wu , Claudia-Elisabeth Wulz , Michael Wurm , Yufei Xi , Dongmei Xia , Yuguang Xie , Zhi-zhong Xing , Jilei Xu , Baojun Yan , Changgen Yang , Chaowen Yang , Guang Yang , Lei Yang , Yifan Yang , Yu Yao , Ugur Yegin , Frederic Yermia , Zhengyun You , Boxiang Yu , Chunxu Yu , Zeyuan Yu , Sandra Zavatarelli , Liang Zhan , Chao Zhang , Hong-Hao Zhang , Jiawen Zhang , Jingbo Zhang , Qingmin Zhang , Yu-Mei Zhang , Zhenyu Zhang , Zhenghua Zhao , Yangheng Zheng , Weili Zhong , Guorong Zhou , Jing Zhou , Li Zhou , Rong Zhou , Shun Zhou , Wenxiong Zhou , Xiang Zhou , Yeling Zhou , Yufeng Zhou , Jiaheng Zou

We consider sterile neutrinos with rest masses ~0.2 GeV. Such sterile neutrinos could augment core collapse supernova shock energies by enhancing energy transport from the core to the vicinity of the shock front. The decay of these…

Astrophysics · Physics 2010-04-28 George M. Fuller , Alexander Kusenko , Kalliopi Petraki

IceCube has observed 80 astrophysical neutrino candidates in the energy range 0.02 < E_\nu/PeV < 2. Deep inelastic scattering of these neutrinos with nucleons on Antarctic ice sheet probe center-of-mass energies $\sqrt{s} \sim$ 1 TeV. By…

High Energy Physics - Phenomenology · Physics 2019-11-06 Luis A. Anchordoqui , Carlos Garcia Canal , Jorge F. Soriano

A significant fraction of the 44TW of heat dissipation from the Earth's interior is believed to originate from the decays of terrestrial uranium and thorium. The only estimates of this radiogenic heat, which is the driving force for mantle…

Atmospheric neutrinos are produced in air showers, when cosmic ray primaries hit the Earth's atmosphere and interact hadronically. The conventional neutrino flux, which dominates the neutrino data measured in the GeV to TeV range by…

High Energy Astrophysical Phenomena · Physics 2019-08-13 Anne Schukraft
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