3 edition of **Macroscopic quantum phenomena** found in the catalog.

Macroscopic quantum phenomena

LT-19 Satellite Workshop (1990 University of Sussex)

- 344 Want to read
- 15 Currently reading

Published
**1991**
by World Scientific in Singapore, New Jersey
.

Written in English

- Quantum theory -- Congresses.

**Edition Notes**

Includes bibliographical references.

Statement | editors, T.D. Clark ... [et al.]. |

Contributions | Clark, T. D. |

Classifications | |
---|---|

LC Classifications | QC173.96 .L7 1990 |

The Physical Object | |

Pagination | ix, 190 p. : |

Number of Pages | 190 |

ID Numbers | |

Open Library | OL1866945M |

ISBN 10 | 9810203829 |

LC Control Number | 90025100 |

Exploring the Quantum Classical Frontier: Recent Advances in Macroscopic Quantum Phenomena Hardcover – February 1, by Jonathan R. Friedman (Author, Editor), Siyuan Han (Editor) See all formats and editions Hide other formats and editions. Price New from Used from Hardcover "Please retry" $ $ $ Format: Hardcover. We review in this paper the use of the theory of scale relativity and fractal space-time as a tool particularly well adapted to the possible development of a future genuine systems theoretical biology. We emphasize in particular the concept of quantum-type potentials, since, in many situations, the effect of the fractality of space—or of the underlying medium—can be reduced to the addition.

Macroscopic quantum phenomena (MQP) manifest in a n um b er o f systems, sup erco nductivit y is probably the o ldest often r eferred to, B ose-Einstein condensate (B EC) [9] and el ectro- and. The book also discusses the relevance of macroscopic quantum phenomena to the control of meso- or nanoscopic devices, particularly those with potential appli- cations in quantum computation or quantum information.

Matter‐wave interferometry is a promising and successful way to explore truly macroscopic quantum phenomena and probe the validity of quantum theory at the borderline to the classic world. Indeed, we may soon witness quantum superpositions with nano to micrometer-sized objects. Yet, venturing deeper into the macroscopic domain is not only an. Reviewing macroscopic quantum phenomena and quantum dissipation, from the phenomenology of magnetism and superconductivity to the presentation of alternative models for quantum dissipation, this book develops the basic material necessary to understand the quantum dynamics of macroscopic variables. Macroscopic quantum phenomena are presented through several examples in .

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Reviewing macroscopic quantum Macroscopic quantum phenomena book and quantum dissipation, from the phenomenology of magnetism and superconductivity to the presentation of alternative models for quantum dissipation, this book develops the basic material necessary to understand the quantum dynamics of macroscopic variables.

It is ideal for graduate students and by: Macroscopic quantum phenomena are particularly important when considering the problem of Schrödinger's cat. This book contains a coherent and self-contained account of such phenomena, focusing on the central role played by macroscopic quantum tunneling.

Shin Takagi begins with an explanation of the nature and significance of the cat by: This volume is an outgrowth of the Second International Workshop on Macroscopic Quantum Coherence and Computing held in Napoli, Italy, in June This workshop gathered a number of experts from the major Universities and Research Institutions of several countries.

The choice of the location, which recognizes the role and the traditions of Naples in this field, guaranteed the. Reviewing macroscopic quantum phenomena and quantum dissipation, from the phenomenology of magnetism and superconductivity to the presentation of alternative models for quantum dissipation, this book develops the basic material necessary to understand the quantum dynamics of macroscopic Brand: Cambridge University Press.

Matter‐wave interferometry is a promising and successful way to explore truly macroscopic quantum phenomena and probe the validity of quantum theory at the borderline to the classic world. Indeed, we may soon witness quantum superpositions with nano to micrometer-sized objects.

Macroscopic Quantum Phenomena The Macroscopic Quantum Model One of the main principles of quantum mechanics is the fact that physical quantities such as energy or momentum are, under certain conditions, quantized. Macroscopic quantum phenomena book That is, they can have only discrete values.

How. The macroscopic scale is the length scale on which objects or phenomena are large enough to be visible with the naked eye, without magnifying optical instruments. It is the opposite of microscopic Overview.

When applied to physical phenomena and bodies, the macroscopic scale describes things as a person can directly perceive them, without the.

The book is an introduction to quantum field theory and renormalization group. It shows that these frameworks are essential for the understanding of phenomena belonging to many different areas of physics, which range from phase transitions in macroscopic systems to the theory of fundamental interactions.

This book emphasizes the common aspects of particle physics and the theory of critical. entitled \Macroscopic Quantum Phenomena and Quantum Dissipation" as a Kramers Professor at the Institute for Theoretical Physics of the University of Utrecht, the Netherlands, whose kind hospitality is greatly acknowledged.

The project of transforming those lecture notes into a book actually. It is well known that quantum phenomena can take place at the macroscopic scale in those systems with negligible dissipation e.g. superconductors, quantum fluids (1) or eventually one-dimensional metals (2).

Magnetic systems also seem to show such effects (3), but to smaller extent, the effect of dissipation being not always negligible there.

The uncertainty principle: Developed by Werner Heisenberg inthis indicates that there exist pairs of conjugate variables that cannot both be measured to an arbitrary level of accuracy. In other words, there is an absolute cap imposed by quantum physics on how accurately certain pairs of measurements can be made, most commonly the measurements of position and momentum at the.

Intriguingly, observable macroscopic quantum phenomena is evidenced by retroaction, ie: receiving information from the future. Hosten and Kwiat established evidence of reverse-direction causality when they detected a shift in a beam of polarized light moving between air and glass that was.

This proceedings volume presents articles from the workshop Macroscopic Limits of Quantum Systems. Focusing on the mathematical investigation of collective phenomena emerging from quantum theory, featured topics include bosonic systems, fermionic systems, and.

Macroscopic Quantum Phenomena The Macroscopic Quantum Model of Superconductivity. s e, d r-r-t) Chap. 1 - 3 Milestones Discovery of superconductivity Meißner-Ochsenfeld effect London-Laue-theory phenomenological model describing observations.

Coherent Phenomena in Superconductivity Macroscopic quantum model of superconductivity Macroscopic wave function 𝛹(,𝑡) Describes the behavior of the whole ensemble of superconducting electrons Justified by microscopic BCS theory Small portion of electrons close to.

Macroscopic Quantum Phenomena The Macroscopic Quantum Model of Superconductivity. ss d r-r-t ( ) Chap. 1 - 3 Milestones Discovery of superconductivity Meißner-Ochsenfeld effect London-Laue-theory phenomenological model describing observations.

It is shown that the familiar “macroscopic quantum phenomena” such as flux quantization and the Josephson effect are irrelevant in this context, because they correspond to states having a very small value of a certain critical property (christened “disconnectivity”) while the states important for a discussion of the quantum theory of.

Researchers and Graduate students in Physics, Materials science and Materials Engineering, in general, and especially those working in the problem of macroscopic quantum phenomena. People such as those working with spintronics, memory storage, etc., should find the book useful especially in regards to the idea of reducing power loss, and.

Quantum mechanical laws are well documented at the level of a single or a few atoms and are here extended to systems containing 10 2 to 10 10 electrons - still much smaller than the usual macroscopic objects, but behaving in a manner similar to a single atom.

Besides the purely theoretical interest, such systems pose a challenge to the achievement of the ultimate microelectronic applications. The book is an introduction to quantum field theory and renormalization shows that these frameworks are essential for the understanding of phenomena belonging to many different areas of physics, which range from phase transitions in macroscopic systems to the theory of fundamental interactions.

This advanced new edition is based on graduate courses and summer schools given by 5/5(1). This book contains a coherent and self-contained account of macroscopic quantum phenomena, focusing on the central role played by macroscopic quantum tunneling.

Beginning with an explanation of the nature and significance of the Schrödinger's cat concept, Shin Takagi introduces macroscopic quantum : $Quantum phase transitions (QPTs) offer wonderful examples of the radical macroscopic effects inherent in quantum physics: phase changes between different forms of matter driven by quantum rather than thermal fluctuations, typically at very low temperatures.

QPTs provide new insight into outstanding problems such as high-temperature superconductivit. The finding is a rare instance of quantum phenomena emerging on the macroscopic scale, and is even more unusual because it is only the second time—the first being superconductivity—that.