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The Superfluid Phases of Helium 3
  • Language: en
  • Pages: 660

The Superfluid Phases of Helium 3

This classic of modern theoretical physics is the first and only comprehensive treatment of the superfluid phases of helium 3, a crucial aspect of condensed matter physics with applications to many other fields. The self-contained approach explores ideas, concepts, and theoretical results, emphasizing symmetries and the consequences of their spontaneous breakdown. 1990 edition.

Photon-Hadron Interactions II
  • Language: en
  • Pages: 206
Perspectives Of Mesoscopic Physics: Dedicated To Yoseph Imry's 70th Birthday
  • Language: en
  • Pages: 463

Perspectives Of Mesoscopic Physics: Dedicated To Yoseph Imry's 70th Birthday

Professor Yoseph (Joe) Imry, an early initiator of mesoscopic physics, has been among the leaders in this field for several decades. This book contains articles by leading (theoretical and experimental) scientists working in nanoscience and in related fields. Most of the contributions, consisting both reviews of the state of the art and new results, summarize invited talks given at two conferences held in honor of Imry's 70th birthday: the 101st Statistical Mechanics Conference (Rutgers University, May 10-12, 2009), and Perspectives of Mesoscopic Physics (Weizmann Institute of Science, May 31-June 1, 2009). This book covers a broad range of active research in nanoscience, including topics like quantum interference, decoherence, electron correlations, nano superconductors and nano magnets, nonequilibrium and glassy behavior.

Electrodynamics of Quantum-Critical Conductors and Superconductors
  • Language: en
  • Pages: 194

Electrodynamics of Quantum-Critical Conductors and Superconductors

  • Type: Book
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  • Published: 2017-12-14
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  • Publisher: Springer

This thesis presents and discusses recent optical low-temperature experiments on disordered NbN, granular Al thin-films, and the heavy-fermion compound CeCoIn5, offering a unified picture of quantum-critical superconductivity. It provides a concise introduction to the respective theoretical models employed to interpret the experimental results, and guides readers through in-depth calculations supplemented with supportive figures in order to both retrace the interpretations and span the bridge between experiment and state-of-the art theory.

The Flow Equation Approach to Many-Particle Systems
  • Language: en
  • Pages: 179

The Flow Equation Approach to Many-Particle Systems

  • Type: Book
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  • Published: 2007-01-09
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  • Publisher: Springer

This self-contained introduction addresses the novel flow equation approach for many particle systems and provides an up-to-date review of the subject. The text first discusses the general ideas and concepts of the flow equation method, and then in a second part illustrates them with various applications in condensed matter theory. The third and last part of the book contains an outlook with current perspectives for future research.

Precision Electroweak Physics at Electron-Positron Colliders
  • Language: en
  • Pages: 182

Precision Electroweak Physics at Electron-Positron Colliders

This up-to-date volume reviews the recent contributions of electron-positron colliders to the precision test of the electroweak Standard Model. In particular, it contains a short summary of the measurements at the Z resonance and gives an overview of the electroweak processes above the Z. Subsequently, the measurement of the W mass at LEP is discussed in detail. The implications for the precision test of the Standard Model are presented, giving the status of the global electroweak fit before the startup of Large Hadron Collider. The final chapters give an outlook on the electroweak physics at a future linear collider. The book also features many illustrations and tables. Readers obtain a coherent overview of the results of 20 years of electroweak physics conducted at electron-positron colliders.

Electron-Beam Interactions with Solids
  • Language: en
  • Pages: 118

Electron-Beam Interactions with Solids

  • Type: Book
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  • Published: 2003-07-03
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  • Publisher: Springer

The interaction of an electron beam with a solid target has been studied since the early part of the past century. Since 1960, the electron–solid interaction hasbecomethesubjectofanumberofinvestigators’workowingtoitsfun- mental role in scanning electron microscopy, in electron-probe microanalysis, in Auger electron spectroscopy, in electron-beam lithography and in radiation damage. The interaction of an electron beam with a solid target has often been investigated theoretically by using the Monte Carlo method, a nume- cal procedure involving random numbers that is able to solve mathematical problems. This method is very useful for the study of electron penetration in matter. The probabil...

Pattern Formation in Granular Materials
  • Language: en
  • Pages: 186

Pattern Formation in Granular Materials

Granular materials are an integral part of our everyday life. They are also the base material for most industrial processing techniques. The highly dissipative nature of the particle collisions means energy input is needed in order to mobilize the grains. This interplay of dissipation and excitation leads to a wide variety of pattern formation processes, which are addressed in this book. The reader is introduced to this wide field by, first, a description of the material properties of granular materials under different experimental conditions that are important in connection with the pattern formation dynamics and, second, by further details given later on in the description of the specific system.