Last edited by Kagazilkree

Thursday, May 14, 2020 | History

6 edition of **Perspectives in Quantum Hall Effects** found in the catalog.

- 235 Want to read
- 9 Currently reading

Published
**November 15, 1996**
by Wiley-Interscience
.

Written in English

**Edition Notes**

Contributions | Sankar Das Sarma (Editor), Aron Pinczuk (Editor) |

The Physical Object | |
---|---|

Number of Pages | 444 |

ID Numbers | |

Open Library | OL7612119M |

ISBN 10 | 047111216X |

ISBN 10 | 9780471112167 |

These lecture notes yield an introduction to quantum Hall effects both for non-relativistic electrons in conventional 2D electron gases (such as in semiconductor heterostructures) and relativistic electrons in graphene. After a brief historical overview in chapter 1, we discuss in detail the kinetic-energy quantisation of non-relativistic and the relativistic electrons in a strong magnetic. The Fractional Quantum Hall Effect presents a general survery of most of the theoretical work on the subject and briefly reviews the experimental results on the excitation gap. Several new topics like anyons, radiative recombinations in the fractional regime, experimental work on the spin-reversed quasi-particles, etc. are added to render the monographic treatment up-to-date.

Topological Insulators: Fundamentals And Perspectives by Frank Ortmann / The present book for the first time provides a full overview and in-depth knowledge about this hot topic in materials science and condensed matter physics. the Dirac point, quantum Hall effects and Majorana fermions are illuminated in individual chapters and. The Fractional Quantum Hall Effect is one of the most remarkable phenomena in all of condensed matter physics. In the presence of a strong magnetic field, charged particles confined to move in the plane can form a series of new states of matter with bizarre properties. Fortunately, our understanding of this menagerie is based almost entirely on many body wavefunctions of a rather simple form.

Topological insulators: fundamentals and perspectives. Responsibility edited by Frank Ortmann, Stephan Roche and Sergio O. Valenzuela. The present book for the first time provides a full overview and in-depth knowledge about this hot topic in materials science and condensed matter physics. the Dirac point, quantum Hall effects and. The Quantum Hall Effects offer a rich variety of theoretical and experimental advances. They provide interesting insights on such topics as gauge invariance, strong interactions in Condensed Matter physics, emergence of new paradigms. This paper focuses on some related philosophical questions.

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A chapter is devoted to the Fermion Chern-Simons theory and the unquantized quantum Hall effect, and subsequent chapters discuss resonant inelastic light scattering from these systems, magnetic field-induced 2D Wigner crystal, and composite fermions in the fractional quantum Hall effect.

Perspectives in Quantum Hall Effects is designed for. The discovery of the quantized and fractional Quantum Hall Effect phenomena is among the most important physics findings in the latter half of this century.

The precise quantization of the electrical resistance involved in the quantized Hall effect phenomena has led to the new definition of the resistance standard and has metrologically. The discovery of the quantized and fractional Quantum Hall Effect phenomena is among the most important physics findings in the latter half of this century.

The precise quantization of the electrical resistance involved in the quantized Hall effect phenomena has led to the new definition of the resistance standard and has metrologically affected all of science and technology.

The discovery of the quantized and fractional Quantum Hall Effect phenomena is among the most important physics findings in the latter half of this century. The precise quantization of the electrical resistance involved in the quantized Hall effect phenomena has led to the new definition of the resistance standard and has metrologically affected all of science and by: Perspectives in Quantum Hall Effects is designed for graduate students and experienced researchers, for theorists Perspectives in Quantum Hall Effects book experimentalists alike, providing a thought-provoking reference for this rapidly growing field and a source of exciting new ideas for future research.\/span>\"@ en\/a> ; \u00A0\u00A0\u00A0\n schema:description\/a.

Book Editor(s): Sankar Das Sarma. Search for more papers by this author. Aron Pinczuk. Search for more papers by this author Perspectives in Quantum Hall Effects: Novel Quantum Liquids in Low‐Dimensional Semiconductor Structures.

Related; Information; Close Figure Viewer. Browse All Figures Return to by: 7. Bibliography Includes bibliographical references and index. Contents. Localization, metal-Insulator transitions and quantum Hall effect-- experimental studies of multi-component quantum Hall systems-- properties of the electron solid-- edge state transport-- multi-component quantum Hall systems: the sum of their parts and more-- Fermion Chern-Simons theory and the unquantized quantum Hall.

PERSPECTIVES IN QUANTUM HALL EFFECTS Novel Quantum Liquids in Low-Dimensional Semiconductor Structures Edited by Sankar Das Sarma Aron Pinczuk ® A WILEY-INTERSCIENCE PUBLICATION JOHN WILEY & SONS, INC. New York • Chichester • Brisbane • Toronto • Singapore •.

ISBN: OCLC Number: Description: 1 online resource ( pages): illustrations: Contents: Localization, Metal-Insulator Transitions, and Quantum Hall Effect (S. Das Sarma).Experimental Studies of Multicomponent Quantum Hall Systems (J. Eisenstein).Properties of the Electron Solid (H.

Fertig).Edge-State Transport (C. Kane & M. Fisher).Multicomponent Quantum. The quantum Hall effect (QHE) is one of the most fascinating and beautiful phenomena in all branches of physics. Tremendous theoretical and experimental developments are still being made in this s: 1. The quantum Hall effect (or integer quantum Hall effect) is a quantum-mechanical version of the Hall effect, observed in two-dimensional electron systems subjected to low temperatures and strong magnetic fields, in which the Hall conductance σ undergoes quantum Hall transitions to take on the quantized values = =, where I channel is the channel current, V Hall is the Hall voltage, e is the.

Quantum Oscillations in TIs Superconducting Proximity Effect in TIs Perspective References 14 Quantum Anomalous Hall Effect Ke He, YayuWang, and Qikun Xue. Introduction to the Quantum Anomalous Hall Effect. Shayegan, “Perspectives of Quantum Hall Effects,” In S.

Das Sarma and A. Pinczuk, Eds., Perspectives in Quantum Hall Effects, Chapter 9, Wiley, New York, Perspectives in quantum Hall effects: novel quantum liquids in low-dimensional semiconductor structures Sankar Das Sarma, Aron Pinczuk The discovery of the quantized and fractional Quantum Hall Effect phenomena is among the most important physics findings in the latter half of this century.

There are surprisingly few dedicated books on the quantum Hall e ect. Two prominent ones are Prange and Girvin, \The Quantum Hall E ect" This is a collection of articles by most of the main players circa The basics are described well but there’s nothing about Chern-Simons theories or the importance of the edge modes.

The first chapters are a good overview of quantum Hall effects. Also it is obviously biased towards Jain's theory of composite fermions (as its title reflects!) and so full of hand-waving arguments to try to justify it. "Perspectives in Quantum Hall Effects", S.

Das Sarma and A. Pinczuk (eds.). There are surprisingly few dedicated books on the quantum Hall eﬀect. Two prominent ones are • Prange and Girvin, “The Quantum Hall Eﬀect” This is a collection of articles by most of the main players circa The basics are described well but there’s nothing about Chern-Simons theories or the importance of the edge modes.

Quantum Hall effects in graph 56 have been studied intensively. Generally speaking, the IQHE in graphene has the same underlying mechanism as that in the semiconductor 2DEG. Readers are referred to Chapter 4 for the basic concepts of quantum Hall effects in semiconductors, e.g.

Landau levels, cyclotron frequency, degeneracy strength, flux quantum, ^compressibility, Shubnikov-de Haas. The quantum Hall effect (QHE), one example of a quantum phenomenon that occurs on a truly macroscopic scale, has attracted intense interest since its discovery in and has helped elucidate many important aspects of quantum physics.

It has also led to the establishment of a new metrological standard, the resistance quantum. Disappointingly, however, the QHE has been observed only at. David Tong: Lectures on the Quantum Hall Effect.

This is a course on the quantum Hall effect, given in TIFR, Mumbai. The first four chapters require only basic quantum mechanics; the final two chapters need techniques from quantum field theory. 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.Integer Quantum hall eﬀect is explained in a brief manner with focus on Landau levels in symmetric or radial gauge, Halperin’s arguement with a Corbino disk and a little about the immportance.M.H.

MacDonald, Quantum Hall Effect: A Perspective Introduction 1 A. Overview 1 B. The Basics 5 C. The Integer Quantum Hall Effect 8 D. The Quantum Hall Effect in a Periodic Potential 14 E. The Fractional Quantum Hall Effect 17 References: 25 Reprinted Articles 24 .