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Physics of Neutron Star Interiors / edited by D. Blaschke, N.K. Glendenning, A. Sedrakian.

Lecture Notes in Physics 1969-2012 Archive Available online

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Format:
Book
Contributor:
Blaschke, D., Editor.
Glendenning, N.K., Editor.
Sedraki︠a︡n, A., Editor.
Series:
Lecture Notes in Physics, 0075-8450 ; 578
Language:
English
Subjects (All):
Astronomy.
Astrophysics.
Nuclear physics.
Astronomy, Astrophysics and Cosmology.
Particle and Nuclear Physics.
Local Subjects:
Astronomy, Astrophysics and Cosmology.
Particle and Nuclear Physics.
Physical Description:
1 online resource (XI, 516 p.)
Edition:
1st ed. 2001.
Place of Publication:
Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2001.
Language Note:
English
Summary:
Neutron stars are the densest observable bodies in our universe. Born during the gravitational collapse of luminous stars - a birth heralded by spectacular supernova explosions - they open a window on a world where the state of the matter and the strengths of the fields are anything but ordinary. This book is a collection of pedagogical lectures on the theory of neutron stars, and especially their interiors, at the forefront of current research. It addresses graduate students and researchers alike, and should be particularly suitable as a text bridging the gap between standard textbook material and the research literature.
Contents:
Microscopic Theory of the Nuclear Equation of State and Neutron Star Structure
Superfluidity in Neutron Star Matter
Relativistic Superfluid Models for Rotating Neutron Stars
The Tensor Virial Method and Its Applications to Self-Gravitating Superfluids
Neutron Star Crusts
Kaon Condensation in Neutron Stars
Phases of QCD at High Baryon Density
Diquarks in Dense Matter
Color Superconductivity in Compact Stars
Strange Quark Stars: Structural Properties and Possible Signatures for Their Existence
Phase Diagram for Spinning and Accreting Neutron Stars
Signal of Quark Deconfinement in Millisecond Pulsars and Reconfinement in Accreting X-ray Neutron Stars
Supernova Explosions and Neutron Star Formation
Evolution of a Neutron Star from Its Birth to Old Age
Neutron Star Kicks and Asymmetric Supernovae
Spin and Magnetism in Old Neutron Stars
Neutrino Cooling of Neutron Stars: Medium Effects.
Notes:
Bibliographic Level Mode of Issuance: Monograph
Includes bibliographical references and index.
ISBN:
3-540-44578-1

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