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The Quantum Hall Effect: Springer Series in Solid-State Sciences, cartea 133

Autor Daijiro Yoshioka
en Limba Engleză Hardback – 26 feb 2002
Today, more than 20 years after the discovery of the quantum Hall effect, the number of publications in this field, at more than one paper per day, is still increasing. This remarkable fact requires some explanation. It also poses, but perhaps also answers, the question of why a new monograph entitled 'The Quantum Hall Effect' is a highly desirable addition to the literature. Originally the quantum Hall effect (QHE) was a term coined to describe the unexpected observation of a fundamental electrical resistance, with a value independent of the microscopic details of the semiconductor device. The simplest explanation of this phenomenon was based on an independent electron picture. The subsequent discovery of the fractional quantum Hall ef­ fect demonstrated that a many-body wave function and a more global view of the system is necessary to incorporate and explain interesting new aspects. Today, the quantum Hall effect has become a pseudonym for many differ­ ent phenomena observed in high magnetic fields, with connections not only to solid state physics but also to theoretical descriptions in plasma physics, astrophysics, atomic physics, and high energy physics. There are even spec­ ulations that a higher-dimensional generalization of the QHE may be useful for discussing questions related to the basic properties of space.
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Specificații

ISBN-13: 9783540431152
ISBN-10: 3540431152
Pagini: 224
Ilustrații: XII, 210 p.
Dimensiuni: 155 x 224 x 18 mm
Greutate: 0.45 kg
Ediția:2002
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Series in Solid-State Sciences

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

1. Discovery of the Quantum Hall Effect.- 2. Two-Dimensional Electrons in a Magnetic Field.- 3. The Integer Quantum Hall Effect.- 4. The Fractional Quantum Hall Effect.- 5. Composite-Particle Mean-Field Theory.- 6. Spin and Pseudospin Freedom.- 7. Even-Denominator States.- 8. Electron States at the Sample Edge.- 9. Higher Landau Levels.- Answers to Exercises.- References.

Recenzii

From the reviews:
In this monograph Daijiro Yoshioka has done a marvelous job.
--The Physicist
"This book will provide a nice starting point for ideas that an experienced solid state physics educator may use for an in-depth introduction to the fundamentals of both the integral and fractional Quantum Hall effect. … this volume does provide a useful introduction to this exciting field in one rather small but excellently produced volume. Rather nicely, each chapter has a few exercises to challenge the reader." (Gary J. Long and Fernande Grandjean, Physicalia, Vol. 25 (3), 2003)
"In this monograph Daijiro Yoshioka has done a marvelous job. … he gives an excellent pedagogic description of both integral and fractional QHEs. … This book would be a good reference for a post-graduate course in Condensed Matter Physics. Those interested enough to learn the subject from scratch, are recommended to buy personal copies." (Mukunda Das, The Physicist, Vol. 39 (5), 2002)

Textul de pe ultima copertă

The quantum Hall effects remains one of the most important subjects to have emerged in condensed matter physics over the past 20 years. The fractional quantum Hall effect, in particular, has opened up a new paradigm in the study of strongly correlated electrons, and it has been shown that new concepts, such as fractional statistics, anyon, chiral Luttinger liquid and composite particles, are realized in two-dimensional electron systems. This book explains the quantum Hall effects together with these new concepts starting from elementary quantum mechanics. Thus, graduate students can use this book to gain an overall understanding of these phenomena.

Caracteristici

Most comprehensive, up-to-date and advanced book on the quantum Hall effect Includes exercises with a separate answer section, making it ideally suited as a graduate text book Provides a valuable introduction for newcomers to the field With a foreword by Prof. Klaus von Klitzing