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  • Book
  • © 2017

New Horizons in Fundamental Physics

  • Presents advances across a broad range of topics in modern nuclear physics
  • Details recent progress in the study and generation of superheavy and exotic nuclei
  • Identifies methodology, analytical and numerical tools that could be used jointly in highly interdisciplinary fields
  • Includes supplementary material: sn.pub/extras

Part of the book series: FIAS Interdisciplinary Science Series (FIAS)

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Table of contents (27 chapters)

  1. QED—Strong Fields and High Precision

    1. Probing QED Vacuum with Heavy Ions

      • Johann Rafelski, Johannes Kirsch, Berndt Müller, Joachim Reinhardt, Walter Greiner
      Pages 211-251
    2. Laser Assisted Breit-Wheeler and Schwinger Processes

      • T. Nousch, A. Otto, D. Seipt, B. Kämpfer, A. I. Titov, D. Blaschke et al.
      Pages 253-262
    3. A Method to Measure Vacuum Birefringence at FCC-ee

      • Ulrik I. Uggerhøj, Tobias N. Wistisen
      Pages 263-270
    4. Unifying Quantum Electro-Dynamics and Many-Body Perturbation Theory

      • Ingvar Lindgren, Sten Salomonson, Johan Holmberg
      Pages 271-282
  2. Astrophysics

    1. Front Matter

      Pages 283-283
    2. Simulations of Accretion Disks Around Massive stars

      • M. B. Algalán, P. O. Hess, W. Greiner
      Pages 285-296
    3. Neutron Stars—Possibilities and Limits for Exotic Phases

      • S. Schramm, V. Dexheimer, R. Mallick
      Pages 297-306
    4. The Case for an Underground Neutrino Facility in South Africa

      • Z. Z. Vilakazi, S. M. Wyngaardt, R. T. Newman, R. Lindsay, A. Buffler, R. de Meijer et al.
      Pages 307-313
  3. Special Topics

    1. Front Matter

      Pages 315-315
    2. Infrastructure Estimates for a Highly Renewable Global Electricity Grid

      • Magnus Dahl, Rolando A. Rodriguez, Anders A. Søndergaard, Timo Zeyer, Gorm B. Andresen, Martin “Walterson” Greiner
      Pages 333-356
    3. Power Flow Tracing in Complex Networks

      • Mirko Schäfer, Sabrina Hempel, Jonas Hörsch, Bo Tranberg, Stefan Schramm, Martin Greiner
      Pages 357-373
    4. Patent Protection of High-Level Research Results

      • Thomas J. Bürvenich
      Pages 375-384
  4. Back Matter

    Pages 385-389

About this book

This volume presents the state-of-the-art in selected topics across modern nuclear physics, covering fields of central importance to research and illustrating their connection to many different areas of physics.

It describes recent progress in the study of superheavy and exotic nuclei, which is pushing our knowledge to ever heavier elements and neutron-richer isotopes. Extending nuclear physics to systems that are many times denser than even the core of an atomic nucleus, one enters the realm of the physics of neutron stars and possibly quark stars, a topic that is intensively investigated with many ground-based and outer-space research missions as well as numerous theoretical works. By colliding two nuclei at very high ultra-relativistic energies one can create a fireball of extremely hot matter, reminiscent of the universe very shortly after the big bang, leading to a phase of melted hadrons and free quarks and gluons, the so-called quark-gluon plasma.

These studiestie up with effects of crucial importance in other fields. During the collision of heavy ions, electric fields of extreme strength are produced, potentially destabilizing the vacuum of the atomic physics system, subsequently leading to the decay of the vacuum state and the emission of positrons.  In neutron stars the ultra-dense matter might support extremely high magnetic fields, far beyond anything that can be produced in the laboratory, significantly affecting the stellar properties.

At very high densities general relativity predicts the stellar collapse to a black hole. However, a number of current theoretical activities, modifying Einstein’s theory, point to possible alternative scenarios, where this collapse might be avoided.

These and related topics are addressed in this book in a series of highly readable chapters. In addition, the book includes fundamental analyses of the practicalities involved in transiting to an electricity supply mainly based on renewableenergies, investigating this scenario less from an engineering and more from a physics point of view.

While the topics comprise a large scope of activities, the contributions also show an extensive overlap in the methodology and in the analytical and numerical tools involved in tackling these diverse research fields that are the forefront of modern science.

Editors and Affiliations

  • FIAS, Goethe University FIAS, Frankfurt, Germany

    Stefan Schramm

  • Frankfurt Inst. for Advanced Studies, FIAS Frankfurt Inst. for Advanced Studies, Frankfurt am Main, Germany

    Mirko Schäfer

About the editors

Prof. Dr. Stefan Schramm is teaching at the Institute of theoretical Physics at Frankfurt University and is member of the Frankfurt Institute of Advanced Studies (FIAS). His main research interests are: Models of Strongly Interacting Matter, Nuclear Astrophysics and Renewable Energies - Modeling the Grid. He is also co-author of the textbook Quantum Chromodynamics (Greiner, Schramm, Stein).

Mirko Schafer received his Diploma in physics from the University of Gießen in 2006. After a PhD in physics at the University of Frankfurt in 2011, he has been a Postdoctoral Researcher at the Department of Mathematics at Aarhus University and at the Frankfurt Institute for Advanced Studies. Since 2016 he is working as a Postdoctoral Fellow on complex networked systems and the system integration of renewable energy at the Department of Engineering at Aarhus University.

Bibliographic Information

Buy it now

Buying options

Softcover Book USD 109.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 109.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access