Condensed Matter Nuclear

Condensed Matter Nuclear Science  eBooks & eLearning

Posted by DZ123 at Dec. 17, 2018
Condensed Matter Nuclear Science

Akito Takahashi, Ken-Ichiro Ota, Yasuhiro Iwamura, "Condensed Matter Nuclear Science"
English | 2006 | ISBN: 9812569014 | PDF | pages: 609 | 39.1 mb

Nuclear Matter in Different Phases and Transitions  eBooks & eLearning

Posted by AvaxGenius at March 11, 2024
Nuclear Matter in Different Phases and Transitions

Nuclear Matter in Different Phases and Transitions: Proceedings of the Workshop Nuclear Matter in Different Phases and Transitions, March 31–April 10, 1998, Les Houches, France by Jean-Paul Blaizot, Xavier Campi, Marek Ploszajczak
English | PDF | 1999 | 523 Pages | ISBN : 0792356608 | 47.3 MB

Nuclei in their ground states behave as quantum fluids, Fermi liquids. When the density, or the temperature of that fluid increases, various phase transitions may occur. Thus, for moderate excitation energies, of the order of a few MeV per nucleon, nuclear matter behaves as an ordinary fluid with gaseous and liquid phases, and a coexistence region below a critical temperature. For higher excitation energies, of the order of a few Ge V per nucleon, the composition of nuclear matter changes, nucleons being gradually turned into baryonic resonances of various kinds. Finally, when 3 the energy density exceeds some few GeV /fm , nuclear matter turns into a gas of weakly interacting quarks and gluons. This new phase of matter has been called the quark-gluon plasma, and its existence is a prediction of Quantum Chromodynamics. Collisions of heavy ions produce nuclear matter with various degrees of excitation. In fact, by selecting the impact parameter and the bombarding energy, one can produce nuclear matter with specified baryonic density and excitation energy. Several major experimental programs are under way (for instance at GANIL, with the detector INDRA, at GSI with the detector ALADIN, at the CERN-SPS, at the AGS of Brookhaven, etc. ), or are in preparation (RRIC, LHC, etc. ). The goal of these experiments is to get evidence for the different phases of nuclear matter predicted by the theory, and to study their properties.

Renormalization Group and Effective Field Theory Approaches to Many-Body Systems  eBooks & eLearning

Posted by AvaxGenius at July 30, 2023
Renormalization Group and Effective Field Theory Approaches to Many-Body Systems

Renormalization Group and Effective Field Theory Approaches to Many-Body Systems by Achim Schwenk, Janos Polonyi
English | PDF | 2012 | 356 Pages | ISBN : 364227319X | 9.4 MB

There have been many recent and important developments based on effective field theory and the renormalization group in atomic, condensed matter, nuclear and high-energy physics. These powerful and versatile methods provide novel approaches to study complex and strongly interacting many-body systems in a controlled manner.

Low-Energy Nuclear Reactions Sourcebook  eBooks & eLearning

Posted by insetes at Jan. 14, 2019
Low-Energy Nuclear Reactions Sourcebook

Low-Energy Nuclear Reactions Sourcebook By Jan Marwan and Steven B. Krivit (Eds.)
2008 | 393 Pages | ISBN: 0841269661 | PDF | 36 MB
Nuclear condensed matter physics with synchrotron radiation: basic principles, methodology and applications

Nuclear condensed matter physics with synchrotron radiation: basic principles, methodology and applications By Ralf Röhlsberger
2004 | 331 Pages | ISBN: 3540232443 | PDF | 11 MB

Computer Simulations of Molecules and Condensed Matter  eBooks & eLearning

Posted by Underaglassmoon at May 29, 2018
Computer Simulations of Molecules and Condensed Matter

Computer Simulations of Molecules and Condensed Matter: From Electronic Structures To Molecular Dynamics
World Scientific | English | 2018 | ISBN-10: 9813230444 | 288 pages | PDF | 8.93 MB

by Xin-zheng Li (Author), En-Ge Wang (Author)

Energy Landscapes, Inherent Structures, and Condensed-Matter Phenomena  eBooks & eLearning

Posted by step778 at April 12, 2023
Energy Landscapes, Inherent Structures, and Condensed-Matter Phenomena

Frank H. Stillinger, "Energy Landscapes, Inherent Structures, and Condensed-Matter Phenomena"
English | 2015 | pages: 523 | ISBN: 0691166803 | PDF | 18,8 mb

Condensed Matter Theories, Volume 22 - Proceedings of the International Workshop  eBooks & eLearning

Posted by arundhati at March 9, 2021
Condensed Matter Theories, Volume 22 - Proceedings of the International Workshop

Gerd Ropke, "Condensed Matter Theories, Volume 22 - Proceedings of the International Workshop"
English | ISBN: 9812709584 | 2007 | 554 pages | PDF | 15 MB

The Art of Gluing Space-Time Manifolds: Methods and Applications  eBooks & eLearning

Posted by AvaxGenius at Dec. 20, 2023
The Art of Gluing Space-Time Manifolds: Methods and Applications

The Art of Gluing Space-Time Manifolds: Methods and Applications by Samad Khakshournia , Reza Mansouri
English | PDF EPUB (True) | 2023 | 126 Pages | ISBN : 3031486110 | 9.7 MB

This concise book reviews methods used for gluing space-time manifolds together. It is therefore relevant to theorists working on branes, walls, domain walls, concepts frequently used in theoretical cosmology, astrophysics, and gravity theory. Nowadays, applications are also in theoretical condensed matter physics where Riemannian geometry appears. The book also reviews the history of matching conditions between two space-time manifolds from the early times of general relativity up to now.

Ion Beam Induced Defects and Their Effects in Oxide Materials  eBooks & eLearning

Posted by AvaxGenius at March 7, 2022
Ion Beam Induced Defects and Their Effects in Oxide Materials

Ion Beam Induced Defects and Their Effects in Oxide Materials by Parmod Kumar
English | PDF,EPUB | | 68 Pages | ISBN : 3030938611 | 15.8 MB

This book provides an overview of the applications of ion beam techniques in oxide materials. Oxide materials exhibit defect-induced physical properties relevant to applications in sensing, optoelectronics and spintronics. Defects in these oxide materials also lead to magnetism in non-magnetic materials or to a change of magnetic ordering in magnetic materials. Thus, an understanding of defects is of immense importance. To date, ion beam tools are considered the most effective techniques for producing controlled defects in these oxides. This book will detail the ion beam tools utilized for creating defects in oxides.