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Introduction to the Theory of Heavy-Ion Collisions (1976)

Introduction to the Theory of Heavy-Ion Collisions

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"Introduction to the Theory of Heavy-Ion Collisions" by W. Nörenberg, H.A. Weidemüller is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.

With the advent of heavy-ion reactions, nuclear physics has acquired a new frontier. The new heavy-ion sources operating at electrostatic accelerators and the high-energy experiments performed at Berkeley, Dubna, Manchester and Orsay, have opened up the field, and have shown us impressive new prospects. The new accelerators now under construction at Berlin, Daresbury and Darmstadt, as well as those under consideration (GANIL, Oak Ridge, etc.) are expected to add significantly to our knowledge and understanding of nuclear properties. This applies not only to such exotic topics as the existence and lifetimes of superheavy elements, or the possibilƯ ity of shock waves in nuclei, but also to such more mundane issues as high-spin states, new regions of deformed nuclei and friction forces. The field promises not only to produce a rich variety of interesting phenomena, but also to have wide-spread theoretical implications. Heavy-ion reactions are characterized by the large masses of the fragments, as well as the high total energy and the large total angular momentum typically involved in the collision. A purely quantum-mechanical description of such a collision process may be too complicated to be either possible or interƯ esting. We expect and, in some cases, know that the classical limit, the limit of geometrical optics, a quantum-statistical or a hydrodynamical description correctly account for typical features.

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Best For: Students and researchers in advanced physics focusing on nuclear and particle physics.
Focus: Theoretical foundations and experimental developments in heavy-ion collisions.
Covers: Heavy-ion reaction mechanisms, experimental setups at various international laboratories, and future accelerator projects.
Why It Matters: It addresses a new frontier in nuclear physics opened by heavy-ion reactions, highlighting recent advances and ongoing developments in the field.

"Introduction to the Theory of Heavy-Ion Collisions" by W. Nörenberg, H.A. Weidemüller is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.

Topic: Cosmology

Author: W. Nörenberg, H.A. Weidemüller

Who this is for:

  • Astronomy students
  • Researchers and advanced hobbyists
  • Readers exploring space science topics

Why this book matters: It matters because it helps readers build a stronger understanding of astronomy concepts, observations, and scientific ideas related to space.

With the advent of heavy-ion reactions, nuclear physics has acquired a new frontier. The new heavy-ion sources operating at electrostatic accelerators and the high-energy experiments performed at Berkeley, Dubna, Manchester and Orsay, have opened up the field, and have shown us impressive new prospects. The new accelerators now under construction at Berlin, Daresbury and Darmstadt, as well as those under consideration (GANIL, Oak Ridge, etc.) are expected to add significantly to our knowledge and understanding of nuclear properties. This applies not only to such exotic topics as the existence and lifetimes of superheavy elements, or the possibilƯ ity of shock waves in nuclei, but also to such more mundane issues as high-spin states, new regions of deformed nuclei and friction forces. The field promises not only to produce a rich variety of interesting phenomena, but also to have wide-spread theoretical implications. Heavy-ion reactions are characterized by the large masses of the fragments, as well as the high total energy and the large total angular momentum typically involved in the collision. A purely quantum-mechanical description of such a collision process may be too complicated to be either possible or interƯ esting. We expect and, in some cases, know that the classical limit, the limit of geometrical optics, a quantum-statistical or a hydrodynamical description correctly account for typical features.

AuthorW. Nörenberg, H.A. Weidemüller
PublisherSpringer
Published1980
ISBN-139783540097532
BindingPaperback
Pages366
LanguageEnglish
SubjectsScience
TopicCosmology
SeriesLecture Notes in Physics

Format: Paperback

Length: 366 pages

Language: English

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