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Related papers: Neutron Star Mergers and How to Study Them

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At the time of defining the science objectives of the INTernational Gamma-Ray Astrophysics Laboratory (INTEGRAL), such a rapid and spectacular development of multi-messenger astronomy could not have been predicted, with new impulsive…

After the discovery of the gravitational waves and the observation of neutrinos of cosmic origin, we have entered a new and exciting era where cosmic rays, neutrinos, photons and gravitational waves will be used simultaneously to study the…

Instrumentation and Methods for Astrophysics · Physics 2017-08-24 G. Torralba Elipe , R. A. Vazquez , E. Zas

Merging neutron stars and neutron star-black holes binaries are powerful sources of gravitational waves. They have also been suggested as possible sources of cosmic gamma-ray bursts and are discussed as sites for the formation of r-process…

Astrophysics · Physics 2007-05-23 H. -Th. Janka , M. Ruffert

Over the past decade, neutrino astronomy has emerged as a new window into the extreme and hidden universe. Current-generation experiments have detected high-energy neutrinos of astrophysical origin and identified the first sources, opening…

High Energy Physics - Experiment · Physics 2025-06-25 C. A. Argüelles , F. Halzen , N. Kurahashi

The discoveries of high-energy astrophysical neutrinos by IceCube in 2013 and of gravitational waves by LIGO in 2015 have enabled a new era of multi-messenger astronomy. Gravitational waves can identify the merging of compact objects such…

High Energy Astrophysical Phenomena · Physics 2019-08-22 Raamis Hussain , Justin Vandenbroucke , Joshua Wood

A neutron star was first detected as a pulsar in 1967. It is one of the most mysterious compact objects in the universe, with a radius of the order of 10 km and masses that can reach two solar masses. In fact, neutron stars are star…

High Energy Astrophysical Phenomena · Physics 2021-07-30 Débora Peres Menezes

The new field of multi-messenger astronomy aims at the study of astronomical sources using different types of "messenger" particles: photons, neutrinos, cosmic rays and gravitational waves. These lectures provide an introductory overview of…

High Energy Astrophysical Phenomena · Physics 2019-07-18 Andrii Neronov

Electromagnetic observations of the sky have been the basis for our study of the Universe for millennia, cosmic ray studies are now entering their second century, the first neutrinos from an astrophysical source were identified three…

Our knowledge and understanding of the Universe is mainly based on observations of the electromagnetic radiation in a wide range of wavelengths. Only during the past two decades, new kinds of detectors have been developed, exploiting other…

High Energy Astrophysical Phenomena · Physics 2019-06-11 Maurizio Spurio

Neutron stars are the densest objects known in our visible universe. Properties of matter inside a neutron star are encoded in its equation of state, which has wide-ranging uncertainty from a theoretical perspective. With the current…

High Energy Astrophysical Phenomena · Physics 2022-04-20 Bhaskar Biswas

In the past four decades a new type of astronomy has emerged, where instead of looking up into the sky "telescopes" are buried miles underground or deep under water or ice and search not for photons (that is, light), but rather for…

Astrophysics · Physics 2008-11-26 E. Waxman

The final burst of gravitational radiation emitted by coalescing binary neutron stars carries direct information about the neutron star fluid, and, in particular, about the equation of state of nuclear matter at extreme densities. The final…

General Relativity and Quantum Cosmology · Physics 2009-11-07 Joshua A. Faber , Frederic A. Rasio

Motivated by the recent detection of the gravitational wave signal emitted by a binary neutron star merger, we analyse the possible impact of dark matter on such signals. We show that dark matter cores in merging neutron stars may yield an…

Cosmology and Nongalactic Astrophysics · Physics 2018-05-16 John Ellis , Andi Hektor , Gert Hütsi , Kristjan Kannike , Luca Marzola , Martti Raidal , Ville Vaskonen

We discuss how to constrain new physics in the neutrino sector using multimessenger astronomical observations by the IceCube experiment. The information from time and direction coincidence with an identifiable source is used to improve…

High Energy Physics - Phenomenology · Physics 2018-11-05 Kevin J. Kelly , Pedro A. N. Machado

Astrophysical observations of the cosmos allow us to probe extreme physics and answer foundational questions on our universe. Modern astronomy is increasingly operating under a holistic approach, probing the same question with multiple…

High Energy Astrophysical Phenomena · Physics 2025-04-04 Eric Burns , Christopher L. Fryer , Ivan Agullo , Jennifer Andrews , Elias Aydi , Matthew G. Baring , Eddie Baron , Peter G. Boorman , Mohammad Ali Boroumand , Eric Borowski , Floor S. Broekgaarden , Poonam Chandra , Emmanouil Chatzopoulos , Hsin-Yu Chen , Kelly A. Chipps , Francesca Civano , Luca Comisso , Alejandro Cárdenas-Avendaño , Phong Dang , Catherine M. Deibel , Tarraneh Eftekhari , Courey Elliott , Ryan J. Foley , Christopher J. Fontes , Amy Gall , Gwendolyn R. Galleher , Gabriela Gonzalez , Fan Guo , Maria C. Babiuc Hamilton , J. Patrick Harding , Joseph Henning , Falk Herwig , William Raphael Hix , Anna Y. Q. Ho , Kelly Holley-Bockelmann , Rebekah Hounsell , C. Michelle Hui , Thomas Brian Humensky , Aimee Hungerford , Robert I. Hynes , Weidong Jin , Heather Johns , Maria Gatu Johnson , Jamie A. Kennea , Carolyn Kuranz , Gavin P. Lamb , Kristina D. Launey , Tiffany R. Lewis , Ioannis Liodakis , Daniel Livescu , Stuart Loch , Nicholas R. MacDonald , Thomas Maccarone , Lea Marcotulli , Athina Meli , Bronson Messer , M. Coleman Miller , Valarie Milton , Elias R. Most , Darin C. Mumma , Matthew R. Mumpower , Michela Negro , Eliza Neights , Peter Nugent , Dheeraj R Pasham , David Radice , Bindu Rani , Jocelyn S. Read , Rene Reifarth , Emily Reily , Lauren Rhodes , Andrea Richard , Paul M. Ricker , Christopher J. Roberts , Hendrik Schatz , Peter Shawhan , Endre Takacs , John A. Tomsick , Aaron C. Trigg , Todd Urbatsch , Nicole Vassh , V. Ashley Villar , Zorawar Wadiasingh , Gaurav Waratkar , Michael Zingale

Neutron star binaries offer a rich phenomenology in terms of gravitational waves and merger remnants. However, most general relativistic studies have been performed for nearly circular binaries, with the exception of head-on collisions. We…

General Relativity and Quantum Cosmology · Physics 2013-01-10 Roman Gold , Sebastiano Bernuzzi , Marcus Thierfelder , Bernd Bruegmann , Frans Pretorius

Neutron stars are the densest, directly observable stellar objects in the universe and serve as unique astrophysical laboratories to study the behavior of matter under extreme physical conditions. This book chapter is devoted to describing…

High Energy Astrophysical Phenomena · Physics 2018-06-11 N. Degenaar , V. F. Suleimanov

We study high-energy emission from the mergers of neutron star binaries as electromagnetic counterparts to gravitational waves aside from short gamma-ray bursts. The mergers entail significant mass ejection, which interacts with the…

High Energy Astrophysical Phenomena · Physics 2015-04-23 Hajime Takami , Koutarou Kyutoku , Kunihito Ioka

The discovery by Advanced LIGO/Virgo of gravitational waves from the binary neutron star (NS) merger GW170817, and subsequently by astronomers of transient counterparts across the electromagnetic (EM) spectrum, has initiated the era of…

High Energy Astrophysical Phenomena · Physics 2017-10-18 Brian D. Metzger