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High Energy Neutrinos from Gamma Ray Bursts: Theoretical Predictions, Experimental Searches, and Prospects for Detection

High Energy Neutrinos from Gamma Ray Bursts: Theoretical Predictions, Experimental Searches, and Prospects for Detection
Author: Oindree Banerjee
Publisher: Oindree Banerjee
Total Pages: 41
Release: 2020-10-23
Genre: Science
ISBN:

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Abstract Gamma-ray bursts (GRBs) are the most luminous transient events in the observed Universe. However, there is no direct observational evidence for what exactly drives a GRB. The most widely accepted model for these cosmic events is the fireball model where it is thought that a substantial fraction of the kinetic energy of the source is converted to gamma-radiation by shock accelerated electrons emitting synchrotron and inverse-Compton radiation. The acceleration of protons in the gamma-ray emitting region of the GRB has been hypothesized as well. In this hadronic acceleration model, it is predicted that protons may interact with gamma-ray photons to produce a burst of neutrinos at energy ∼10^14 eV during prompt emission and energy ∼10^18 eV during afterglow emission. Several experimental searches for these high energy neutrinos have been conducted and no GRB neutrinos have yet been found. The analytical prediction for neutrino flux has been replaced with a more thorough numerical prediction for neutrino flux. The neutron model of GRBs, where only neutrons can escape the GRB and reach Earth as cosmic rays, has been ruled out by the experimental work of IceCube and ANTARES. Upgraded versions of current experiments such as IceCube, ANTARES, ANITA and ARA, as well as new experiments such as KM3NeT, are preparing to probe and further constrain the fireball paradigm of GRB neutrino production. This review includes: Introduction Early theoretical predictions for neutrino fluences due to GRBs Overview of high energy neutrino experiments and related physics Experimental searches for high energy neutrinos from GRBs Prospects for detection of high energy neutrinos from GRBs High Energy Neutrinos from Gamma Ray Bursts: Theoretical Predictions, Experimental Searches, and Prospects for Detection was originally written as a review submitted for my Ph.D. candidacy paper on Nov 23, 2015. It has been edited for a "Short Read" on Amazon Kindle Direct Publishing in Oct 2020. It is a public domain work. Special thanks to the Connolly group at Ohio State University (OSU) and the physics and astronomy departments at OSU. Moreover, I am grateful for the contribution of each and every scientist and author listed in the "References" section of this review. This review would not be possible without their published science and hard work. Please let me know if you find any mistakes or problems, I will fix it. My email is [email protected]. I am happy for this to be a living document. I am anxious to improve it but feel that it needs to be out at this point before that can happen.


High Energy Astrophysical Neutrinos

High Energy Astrophysical Neutrinos
Author: Debanjan Bose
Publisher: Springer Nature
Total Pages: 75
Release: 2021-12-07
Genre: Science
ISBN: 3030912582

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This book provides a pedagogical introduction to the likely sources of these neutrinos, their propagation and detection mechanisms. Detection of high energy neutrinos of extragalactic origin has led to an interdisciplinary field of research, involving astronomy, astrophysics and particle physics. An extensive review of various detectors and the observations is provided that consolidates the latest findings. Above a few tens of TeVs, neutrinos are conceived as more reliable messengers for astronomy than photons as these photons get absorbed in the background photon field. Determining the neutrino spectrum not only helps in exploring astrophysical objects like AGN, GRB, etc. but also allows us to study particle physics at unprecedented energies. This introductory book is intended to help advanced undergraduate and graduate students to get into the subject with ease, and it simultaneously caters to practicing theoretical or experimental physicists as a reference book.


GRANDE

GRANDE
Author:
Publisher:
Total Pages:
Release: 1989
Genre:
ISBN:

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The GRANDE experiment is a ''next-generation'' detector capable of making significant contributions to the fields of neutrino and .gamma.-ray astrophysics as well as performing important ''conventional'' high-energy physics investigations. The detector, which covers an area of 250 m × 250 m, will have excellent coverage for potential sources of .nu. emission in the southern hemisphere and of VHE and UHE sources in the northern hemisphere. For VHE and UHE showers, the low threshold (10 TeV) and complete coverage for all three shower components (electromagnetic, muonic, and hadronic) are unique. Excellent angular resolution, less than or equal to1° for .nu.'s and less than or equal to. 3° for .gamma.-rays, large acceptance, good energy resolution, and wide energy sensitivity will permit detailed studies of the observed signals enabling a quantitative confrontation with theoretical predictions. The detector and its capabilities will be described. 5 refs., 3 figs., 2 tabs.


A Search for High-energy Neutrino Emission from Gamma-ray Bursts

A Search for High-energy Neutrino Emission from Gamma-ray Bursts
Author:
Publisher:
Total Pages: 220
Release: 2012
Genre:
ISBN:

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A century after their discovery, the origin of cosmic rays remains one of the most enduring mysteries in physics. They can have energies that exceed 1020 eV, a hundred million times as energetic as the most powerful Earth-bound particle accelerators and must therefore be produced in the universe's most violent environments. Direct observation of their origins, however, has proven difficult due to deflection of charged cosmic ray particles in galactic and intergalactic magnetic fields, obscuring their true origins. Astronomy using electrically neutral particles, such as photons and neutrinos, does not, however, share this difficulty. This work presents a search for neutrino emission from one of the primary candidates for the sources of the highest-energy cosmic rays, Gamma-Ray Bursts, using the recently-completed IceCube neutrino telescope located at the South Pole. The null result obtained from this search contradicts well-established predictions for the neutrino flux from Gamma-Ray Bursts if they are the cosmic ray sources, forcing a reevaluation of these theoretical models.


New Prospects for High-energy Neutrinos from Gamma-ray Bursts

New Prospects for High-energy Neutrinos from Gamma-ray Bursts
Author:
Publisher:
Total Pages:
Release: 2008
Genre:
ISBN:

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High-energy neutrinos from Gamma-Ray Bursts (GRBs) have been expected since the pre-Swift era. Such signals may be detected by future large neutrino detectors such as IceCube. Recently Swift has shown several novel phenomena. We suggest the new prospects for high-energy neutrino emission in the Swift era. Expected signals, if detected, are useful for revealing of the nature of GRBs.


Non-accelerator Astroparticle Physics

Non-accelerator Astroparticle Physics
Author: R. A. Carrigan
Publisher: World Scientific
Total Pages: 369
Release: 2002
Genre: Science
ISBN: 9810249438

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This volume provides timely coverage of nonaccelerator astroparticle physics. It complements two volumes prepared for earlier schools. Informative and pedagogical, it can serve as the basis for a modern course on the subject.The first section discusses the fundamentals of particle physics, with reviews of the standard model and beyond. The section on neutrinos and neutrino oscillations covers topics including neutrino oscillations, short and long baseline neutrino beams from accelerators, atmospheric and solar neutrinos, neutrinos from gravitational stellar collapses and neutrino telescopes. Another section deals with dark matter searches. Cosmic rays and astrophysics are covered with reviews of experiments in space, extreme energy cosmic rays, and gamma ray bursts. Gravitational waves and gravitational wave detectors are discussed. The final section deals with results from accelerators and future plans for accelerator facilities, computing, and new large and small detectors. Abstracts of the posters presented by participants at the school give a broad picture of world-wide activities in the field.


High Energy Neutrinos from Gamma-ray Bursts

High Energy Neutrinos from Gamma-ray Bursts
Author: Shan Gao
Publisher:
Total Pages:
Release: 2014
Genre:
ISBN:

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Neutrino astronomy began with the detection of solar neutrinos, supernova neutrinos(SN1987A) and more recently the 37 events in IceCube which are very likelyto be an astrophysical origin. The result from IceCube is perhaps the most excitingdiscovery of the year 2013, capping a several decades long search. Variousastrophysical candidates have been proposed as sources of high energy neutrinos,although the origin of the IceCube neutrinos remains a mystery. Gamma-raybursts (GRBs), the most energetic explosions in the universe, were considered asthe most promising source for high energy cosmic rays and neutrinos (with AGNs).However, a previous search of GRB neutrinos by IceCube surprised the GRB communitywith negative results, challenging the simple standard picture of GRBprompt emission which is called the \internal shock" model. In this thesis we givea closer investigation of this model as well as several leading alternative models.With a careful consideration of the particle physics and the model parameters weshow that the previous negative result with GRB neutrinos is not surprising, andonly those models with extremely optimistic parameters can be ruled out. Wepredict that GRBs are unlikely to be the sole sources of the IceCube events, butsignals of GRB neutrinos may be detected in the near future, with the neutrinotelescopes such as IceCube/DeepCore, KM3Net, ARA, ARIANNA, ANITA etc.


Neutrinos and Explosive Events in the Universe

Neutrinos and Explosive Events in the Universe
Author: Maurice M. Shapiro
Publisher: Springer Science & Business Media
Total Pages: 412
Release: 2006-01-26
Genre: Science
ISBN: 1402037481

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“Neutrinos and Explosive Events in the Universe” brought together experts from diverse disciplines to offer a detailed view of the exciting new work in this part of High Energy Astrophysics. Sponsored by NATO as an Advanced Study Institute, and coordinated under the auspices of the International School of Cosmic Ray Astrophysics (14th biennial course), the ASI featured a full program of lectures and discussion in the ambiance of the Ettore Majorana Centre in Erice, Italy, including visits to the local Dirac and Chalonge museum collections as well as a view of the cultural heritage of southern Sicily. Enri- ment presentations on results from the Spitzer Infrared Space Telescope and the Origin of Complexity complemented the program. This course was the best attended in the almost 30 year history of the School with 121 participants from 22 countries. The program provided a rich ex- rience, both introductory and advanced, to fascinating areas of observational Astrophysics Neutrino Astronomy, High Energy Gamma Ray Astronomy, P- ticle Astrophysics and the objects most likely responsible for the signals - plosions and related phenomena, ranging from Supernovae to Black Holes to the Big Bang. Contained in this NATO Science Series volume is a summative formulation of the physics and astrophysics of this newly emerging research area that already has been, and will continue to be, an important contributor to understanding our high energy universe.