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 #  AuthorTitleAccn#YearItem Type Claims
1 Haardt, Francesco Astrophysical Black Holes I10094 2016 eBook  
2 Peron, Roberto Gravity: Where Do We Stand? I09744 2016 eBook  
3 Matarrese, Sabino Dark Matter and Dark Energy I06991 2011 eBook  
4 Colpi, Monica Physics of Relativistic Objects in Compact Binaries: from Birth to Coalescence I05623 2009 eBook  
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1.    
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TitleAstrophysical Black Holes
Author(s)Haardt, Francesco;Gorini, Vittorio;Moschella, Ugo;Treves, Aldo;Colpi, Monica
PublicationCham, Springer International Publishing, 2016.
DescriptionXII, 314 p. 107 illus., 88 illus. in color : online resource
Abstract NoteBased on graduate school??lectures in contemporary relativity and gravitational physics, this book??gives a complete and unified picture of the present status of theoretical and observational properties of astrophysical black holes. The chapters are written by internationally recognized specialists. They??cover general theoretical aspects of black hole astrophysics, the theory of accretion and ejection of gas and jets, stellar-sized black holes observed in the Milky Way, the formation and evolution of supermassive black holes in galactic centers and quasars as well as their influence on the dynamics in galactic nuclei. The final chapter addresses analytical relativity of black holes supporting theoretical understanding of the coalescence of black holes as well as being of great relevance in identifying gravitational wave signals. With its introductory chapters the book is aimed at advanced graduate and post-graduate students, but it will also be useful for specialists
ISBN,Price9783319194165
Keyword(s)1. ASTROPHYSICS 2. Astrophysics and Astroparticles 3. Classical and Quantum Gravitation, Relativity Theory 4. EBOOK 5. EBOOK - SPRINGER 6. GRAVITATION
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I10094     On Shelf    

2.     
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TitleGravity: Where Do We Stand?
Author(s)Peron, Roberto;Colpi, Monica;Gorini, Vittorio;Moschella, Ugo
PublicationCham, Springer International Publishing, 2016.
DescriptionXIV, 484 p. 130 illus., 103 illus. in color : online resource
Abstract NoteThis book presents an overview of the current understanding of gravitation, with a focus on the current efforts to test its theories, especially general relativity. It shows how the quest for a deeper understanding, which would possibly incorporate gravity in the quantum realm, is more than ever an open field. The majority of the contributions deals with the manifold facets of ???experimental gravitation???, but the book goes beyond this and covers a broad range of subjects from the foundations of gravitational theories to astrophysics and cosmology. The book is divided into three parts. The first part deals with foundations and Solar System tests. An introductory pedagogical chapter reviews first Newtonian gravitational theory, special relativity, the equivalence principle and the basics of general relativity. Then it focuses on approximation methods, mainly the post-Newtonian formalism and the relaxed Einstein equations, with a discussion on how they are used in treating experimental tests and in the problem of generation and detection of gravitational waves. Following this is a set of chapters describing the most recent experiments, techniques and observations to test the theories of gravitation in the laboratory, around the Earth and in the Solar System. The second part is dedicated to astrophysical topics deeply linked with the study of gravitation, namely binary pulsars and the perspective of direct detection of gravitational waves. These cases are paradigmatic in that the gravitational signals act at the same time as messengers helping us to understand the properties of important and wide classes of astrophysical objects. The third part explores the many open issues in the current knowledge of gravitation machinery, especially related to astrophysical and cosmological problems, and the way possible solutions to them impact the quest for a quantum theory of gravitation and unified theory. Included is a selection of the many possible paths, giving a hint to the subtleties one is called upon. Whenever possible, a close link to observational constraints and possible experimental tests is provided. In selecting the topics of the various contributions, particular care has been devoted to ensure their fit in a coherent representation of our understanding of gravitational phenomena. The book is aimed at graduate level students and will form a valuable reference for those working in the field
ISBN,Price9783319202242
Keyword(s)1. ASTROPHYSICS 2. Astrophysics and Astroparticles 3. Classical and Quantum Gravitation, Relativity Theory 4. COSMOLOGY 5. EBOOK 6. EBOOK - SPRINGER 7. GRAVITATION 8. Quantum Field Theories, String Theory 9. QUANTUM FIELD THEORY 10. STRING THEORY
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I09744     On Shelf    

3.     
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TitleDark Matter and Dark Energy : A Challenge for Modern Cosmology
Author(s)Matarrese, Sabino;Colpi, Monica;Gorini, Vittorio;Moschella, Ugo
PublicationDordrecht, Springer Netherlands, 2011.
DescriptionXIV, 404 p : online resource
Abstract NoteThis book brings together reviews from leading international authorities on the developments in the study of dark matter and dark energy, as seen from both their cosmological and particle physics side. Studying the physical and astrophysical properties of the dark components of our Universe is a crucial step towards the ultimate goal of unveiling their nature. The work developed from a doctoral school sponsored by the Italian Society of General Relativity and Gravitation. The book starts with a concise introduction to the standard cosmological model, as well as with a presentation of the theory of linear perturbations around a homogeneous and isotropic background. It covers the particle physics and cosmological aspects of dark matter and (dynamical) dark energy, including a discussion of how modified theories of gravity could provide a possible candidate for dark energy. A detailed presentation is also given of the possible ways of testing the theory in terms of cosmic microwave background, galaxy redshift surveys and weak gravitational lensing observations. Included is a chapter reviewing extensively the direct and indirect methods of detection of the hypothetical dark matter particles. Also included is a self-contained introduction to the techniques and most important results of numerical (e.g. N-body) simulations in cosmology. This volume will be useful to researchers, PhD and graduate students in Astrophysics, Cosmology Physics and Mathematics, who are interested in cosmology, dark matter and dark energy
ISBN,Price9789048186853
Keyword(s)1. ASTROPHYSICS 2. Astrophysics and Astroparticles 3. Classical and Quantum Gravitation, Relativity Theory 4. EBOOK 5. EBOOK - SPRINGER 6. Elementary particles (Physics) 7. Elementary Particles, Quantum Field Theory 8. GRAVITATION 9. Measurement Science and Instrumentation 10. Measurement?????? 11. Numerical and Computational Physics, Simulation 12. PHYSICAL MEASUREMENTS 13. PHYSICS 14. QUANTUM FIELD THEORY
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I06991     On Shelf    

4.    
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TitlePhysics of Relativistic Objects in Compact Binaries: from Birth to Coalescence
Author(s)Colpi, Monica;Casella, Piergiorgio;Gorini, Vittorio;Moschella, Ugo;Possenti, Andrea
PublicationDordrecht, Springer Netherlands, 2009.
DescriptionXIV, 378 p : online resource
Abstract NoteThis book provides a comprehensive, authoritative and timely review of the astrophysical approach to the investigation of gravity theories. Particular attention is paid to strong-field tests of general relativity and alternative theories of gravity, performed using collapsed objects (neutron stars, black holes and white dwarfs) in relativistic binaries as laboratories. The book starts with an introduction which gives the background linking experimental gravity in cosmic laboratories to astrophysics and fundamental physics. Subsequent chapters cover observational and theoretical aspects of the following topics: from binaries as test-beds of gravity theories to binary pulsars as cosmic laboratories; from binary star evolution to the formation of relativistic binaries; from short gamma-ray bursts to low mass X-ray binaries; from stellar-mass black hole binaries to coalescing super-massive black holes in galaxy mergers. The book will be useful to researchers, PhD and graduate students in Astrophysics, Cosmology, Physics and Mathematics, who are interested in relativistic astrophysics, experimental gravity and general relativity
ISBN,Price9781402092640
Keyword(s)1. ASTRONOMY 2. Astronomy, Astrophysics and Cosmology 3. ASTROPHYSICS 4. Astrophysics and Astroparticles 5. Classical and Quantum Gravitation, Relativity Theory 6. EBOOK 7. EBOOK - SPRINGER 8. GRAVITATION
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I05623     On Shelf    

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