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Predictions of the thermodynamic conditions for phase transitions at high baryon densities and large chemical potentials are currently uncertain and largely phenomenological. Neutrino observations of core-collapse supernovae can be used to…

Measuring the rotation of core-collapse supernovae (SN) and of their progenitor stars is extremely challenging. Here it is demonstrated that neutrinos may potentially be employed as stellar gyroscopes, if phases of activity by the standing…

High Energy Astrophysical Phenomena · Physics 2018-12-12 Laurie Walk , Irene Tamborra , Hans-Thomas Janka , Alexander Summa

Neutrinos from core-collapse supernovae are essential for the understanding of neutrino physics and stellar evolution. The dual-phase xenon dark matter detectors can provide a way to track explosions of galactic supernovae by detecting…

The discovery of non-zero neutrino masses invites one to consider decays of heavier neutrinos into lighter ones. We investigate the impact of two-body decays of neutrinos on the neutronization burst of a core-collapse supernova -- the large…

High Energy Physics - Phenomenology · Physics 2020-02-26 André de Gouvêa , Ivan Martinez-Soler , Manibrata Sen

The core-collapse supernova (CCSN) is considered one of the most energetic astrophysical events in the universe. The early and prompt detection of neutrinos before (pre-SN) and during the supernova (SN) burst presents a unique opportunity…

High Energy Physics - Experiment · Physics 2023-12-05 Angel Abusleme , Thomas Adam , Shakeel Ahmad , Rizwan Ahmed , Sebastiano Aiello , Muhammad Akram , Abid Aleem , Fengpeng An , Qi An , Giuseppe Andronico , Nikolay Anfimov , Vito Antonelli , Tatiana Antoshkina , Burin Asavapibhop , João Pedro Athayde Marcondes de André , Didier Auguste , Weidong Bai , Nikita Balashov , Wander Baldini , Andrea Barresi , Davide Basilico , Eric Baussan , Marco Bellato , Marco Beretta , Antonio Bergnoli , Daniel Bick , Lukas Bieger , Svetlana Biktemerova , Thilo Birkenfeld , Iwan Morton-Blake , David Blum , Simon Blyth , Anastasia Bolshakova , Mathieu Bongrand , Clément Bordereau , Dominique Breton , Augusto Brigatti , Riccardo Brugnera , Riccardo Bruno , Antonio Budano , Jose Busto , Anatael Cabrera , Barbara Caccianiga , Hao Cai , Xiao Cai , Yanke Cai , Zhiyan Cai , Stéphane Callier , Antonio Cammi , Agustin Campeny , Chuanya Cao , Guofu Cao , Jun Cao , Rossella Caruso , Cédric Cerna , Vanessa Cerrone , Chi Chan , Jinfan Chang , Yun Chang , Auttakit Chatrabhuti , Chao Chen , Guoming Chen , Pingping Chen , Shaomin Chen , Yixue Chen , Yu Chen , Zhangming Chen , Zhiyuan Chen , Zikang Chen , Jie Cheng , Yaping Cheng , Yu Chin Cheng , Alexander Chepurnov , Alexey Chetverikov , Davide Chiesa , Pietro Chimenti , Yen-Ting Chin , Ziliang Chu , Artem Chukanov , Gérard Claverie , Catia Clementi , Barbara Clerbaux , Marta Colomer Molla , Selma Conforti Di Lorenzo , Alberto Coppi , Daniele Corti , Simon Csakli , Flavio Dal Corso , Olivia Dalager , Jaydeep Datta , Christophe De La Taille , Zhi Deng , Ziyan Deng , Xiaoyu Ding , Xuefeng Ding , Yayun Ding , Bayu Dirgantara , Carsten Dittrich , Sergey Dmitrievsky , Tadeas Dohnal , Dmitry Dolzhikov , Georgy Donchenko , Jianmeng Dong , Evgeny Doroshkevich , Wei Dou , Marcos Dracos , Frédéric Druillole , Ran Du , Shuxian Du , Katherine Dugas , Stefano Dusini , Hongyue Duyang , Jessica Eck , Timo Enqvist , Andrea Fabbri , Ulrike Fahrendholz , Lei Fan , Jian Fang , Wenxing Fang , Marco Fargetta , Dmitry Fedoseev , Zhengyong Fei , Li-Cheng Feng , Qichun Feng , Federico Ferraro , Amélie Fournier , Haonan Gan , Feng Gao , Alberto Garfagnini , Arsenii Gavrikov , Marco Giammarchi , Nunzio Giudice , Maxim Gonchar , Guanghua Gong , Hui Gong , Yuri Gornushkin , Alexandre Göttel , Marco Grassi , Maxim Gromov , Vasily Gromov , Minghao Gu , Xiaofei Gu , Yu Gu , Mengyun Guan , Yuduo Guan , Nunzio Guardone , Cong Guo , Wanlei Guo , Xinheng Guo , Caren Hagner , Ran Han , Yang Han , Miao He , Wei He , Tobias Heinz , Patrick Hellmuth , Yuekun Heng , Rafael Herrera , YuenKeung Hor , Shaojing Hou , Yee Hsiung , Bei-Zhen Hu , Hang Hu , Jianrun Hu , Jun Hu , Shouyang Hu , Tao Hu , Yuxiang Hu , Zhuojun Hu , Guihong Huang , Hanxiong Huang , Jinhao Huang , Junting Huang , Kaixuan Huang , Wenhao Huang , Xin Huang , Xingtao Huang , Yongbo Huang , Jiaqi Hui , Lei Huo , Wenju Huo , Cédric Huss , Safeer Hussain , Leonard Imbert , Ara Ioannisian , Roberto Isocrate , Arshak Jafar , Beatrice Jelmini , Ignacio Jeria , Xiaolu Ji , Huihui Jia , Junji Jia , Siyu Jian , Cailian Jiang , Di Jiang , Wei Jiang , Xiaoshan Jiang , Xiaoping Jing , Cécile Jollet , Philipp Kampmann , Li Kang , Rebin Karaparambil , Narine Kazarian , Ali Khan , Amina Khatun , Khanchai Khosonthongkee , Denis Korablev , Konstantin Kouzakov , Alexey Krasnoperov , Sergey Kuleshov , Nikolay Kutovskiy , Loïc Labit , Tobias Lachenmaier , Cecilia Landini , Sébastien Leblanc , Victor Lebrin , Frederic Lefevre , Ruiting Lei , Rupert Leitner , Jason Leung , Demin Li , Fei Li , Fule Li , Gaosong Li , Huiling Li , Jiajun Li , Mengzhao Li , Min Li , Nan Li , Qingjiang Li , Ruhui Li , Rui Li , Shanfeng Li , Tao Li , Teng Li , Weidong Li , Weiguo Li , Xiaomei Li , Xiaonan Li , Xinglong Li , Yi Li , Yichen Li , Yufeng Li , Zhaohan Li , Zhibing Li , Ziyuan Li , Zonghai Li , Hao Liang , Hao Liang , Jiajun Liao , Ayut Limphirat , Guey-Lin Lin , Shengxin Lin , Tao Lin , Jiajie Ling , Xin Ling , Ivano Lippi , Caimei Liu , Fang Liu , Fengcheng Liu , Haidong Liu , Haotian Liu , Hongbang Liu , Hongjuan Liu , Hongtao Liu , Hui Liu , Jianglai Liu , Jiaxi Liu , Jinchang Liu , Min Liu , Qian Liu , Qin Liu , Runxuan Liu , Shenghui Liu , Shubin Liu , Shulin Liu , Xiaowei Liu , Xiwen Liu , Xuewei Liu , Yankai Liu , Zhen Liu , Alexey Lokhov , Paolo Lombardi , Claudio Lombardo , Kai Loo , Chuan Lu , Haoqi Lu , Jingbin Lu , Junguang Lu , Peizhi Lu , Shuxiang Lu , Xianguo Lu , Bayarto Lubsandorzhiev , Sultim Lubsandorzhiev , Livia Ludhova , Arslan Lukanov , Daibin Luo , Fengjiao Luo , Guang Luo , Jianyi Luo , Shu Luo , Wuming Luo , Xiaojie Luo , Vladimir Lyashuk , Bangzheng Ma , Bing Ma , Qiumei Ma , Si Ma , Xiaoyan Ma , Xubo Ma , Jihane Maalmi , Marco Magoni , Jingyu Mai , Yury Malyshkin , Roberto Carlos Mandujano , Fabio Mantovani , Xin Mao , Yajun Mao , Stefano M. 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With myriads of detection events from a prospective Galactic core-collapse supernova, current and future neutrino detectors will be able to sample detailed, time-dependent neutrino fluxes and spectra. This offers enormous possibilities for…

High Energy Astrophysical Phenomena · Physics 2019-09-04 B. Müller

We present results from an ab initio three-dimensional, multi-physics core collapse supernova simulation for the case of a 15 M progenitor. Our simulation includes multi-frequency neutrino transport with state-of-the-art neutrino…

A Galactic core-collapse supernova (CCSN) is likely to be observed in neutrino detectors around the world minutes to hours before the electromagnetic radiation arrives. The SNEWS2.0 network of neutrino and dark matter detectors aims to use…

Core-collapse supernovae produce an intense burst of electron antineutrinos in the few-tens-of-MeV range. Several Large Liquid Scintillator-based Detectors (LLSD) are currently operated worldwide, being very effective for low energy…

Instrumentation and Methods for Astrophysics · Physics 2015-08-26 V. Fischer , T. Chirac , T. Lasserre , C. Volpe , M. Cribier , M. Durero , J. Gaffiot , T. Houdy , A. Letourneau , G. Mention , M. Pequignot , V. Sibille , M. Vivier

The legacy of solar neutrinos suggests that large neutrino detectors should be sited underground. However, to instead go underwater bypasses the need to move mountains, allowing much larger water Cherenkov detectors. We show that reaching a…

The current supernova detection technique used in IceCube relies on the sudden deviation of the summed photomultiplier noise rate from its nominal value during the neutrino burst, making IceCube a $\approx 3$ Megaton effective detection…

Instrumentation and Methods for Astrophysics · Physics 2015-05-28 L. Demiroers , M. Ribordy , M. Salathe

The formation of a core collapse supernovae (SNe) results in a fast (but non- or mildly-relativistic) shock wave expanding outwards into the surrounding medium. The medium itself is likely modified due to the stellar mass-loss from the…

High Energy Astrophysical Phenomena · Physics 2015-09-04 Vikram V. Dwarkadas , M. Renaud , A. Marcowith , V. Tatischeff

We present recent work on using astronomical observations of neutron stars to reveal unique insights into nuclear matter that cannot be obtained from laboratories on Earth. First, we discuss our measurement of the rapid cooling of the…

High Energy Physics - Phenomenology · Physics 2013-03-18 Wynn C. G. Ho , Nils Andersson , Cristobal M. Espinoza , Kostas Glampedakis , Brynmor Haskell , Craig O. Heinke

The next time a core-collapse supernova (SN) explodes in our galaxy, vari- ous detectors will be ready and waiting to detect its emissions of gravitational waves (GWs) and neutrinos. Current numerical simulations have successfully…

High Energy Astrophysical Phenomena · Physics 2015-09-30 Takaaki Yokozawa , Mitsuhiro Asano , Tsubasa Kayano , Yudai Suwa , Nobuyuki Kanda , Yusuke Koshio , Mark R. Vagins

The explosion of a core-collapse supernova can be approximated by the breakdown of steady-state solutions for accretion onto a proto-neutron star (PNS). We analytically show that as the neutrino luminosity exceeds a critical value L_c, the…

Solar and Stellar Astrophysics · Physics 2013-05-30 Uri Keshet , Shmuel Balberg

Recent studies have highlighted the sensitivity of core-collapse supernovae (CCSNe) models to electron-capture (EC) rates on neutron-rich nuclei near the N=50 closed-shell region. In this work, we perform a large suite of one-dimensional…

High Energy Astrophysical Phenomena · Physics 2022-11-15 Zac Johnston , Sheldon Wasik , Rachel Titus , MacKenzie L. Warren , Evan P. O'Connor , Remco Zegers , Sean M. Couch

Core-collapse supernovae emit of order $10^{58}$ neutrinos and antineutrinos of all flavors over several seconds, with average energies of 10--25 MeV. In the Sudbury Neutrino Observatory (SNO), a future Galactic supernova at a distance of…

High Energy Physics - Phenomenology · Physics 2007-05-23 J. F. Beacom

After a successful core collapse supernova (CCSN) explosion, a hot dense proto-neutron star (PNS) is left as a remnant. Over a time of twenty or so seconds, this PNS emits the majority of the neutrinos that come from the CCSN, contracts,…

High Energy Astrophysical Phenomena · Physics 2018-04-25 Luke F. Roberts , Sanjay Reddy

Neutrinos from a Galactic core-collapse supernova will be measured by neutrino detectors minutes to days before an optical signal reaches Earth. We present a novel calculation showing the ability of current and near-future neutrino…

High Energy Astrophysical Phenomena · Physics 2021-01-27 Manne Segerlund , Erin O'Sullivan , Evan O'Connor

The observation of neutrinos from Supernova~1987A has confirmed the theoretical conjecture that these particles play a crucial role during the collapse of the core of a massive star. Only one per cent of the energy they carry away from the…

Astrophysics · Physics 2007-05-23 H. -Th. Janka