Interpreting Quantum Theories

Interpreting Quantum Theories
Author :
Publisher : Oxford University Press
Total Pages : 400
Release :
ISBN-10 : 9780191617379
ISBN-13 : 0191617377
Rating : 4/5 (79 Downloads)

Synopsis Interpreting Quantum Theories by : Laura Ruetsche

Traditionally, philosophers of quantum mechanics have addressed exceedingly simple systems: a pair of electrons in an entangled state, or an atom and a cat in Dr. Schrödinger's diabolical device. But recently, much more complicated systems, such as quantum fields and the infinite systems at the thermodynamic limit of quantum statistical mechanics, have attracted, and repaid, philosophical attention. Interpreting Quantum Theories has three entangled aims. The first is to guide those familiar with the philosophy of ordinary QM into the philosophy of 'QM infinity', by presenting accessible introductions to relevant technical notions and the foundational questions they frame. The second aim is to develop and defend answers to some of those questions. Does quantum field theory demand or deserve a particle ontology? How (if at all) are different states of broken symmetry different? And what is the proper role of idealizations in working physics? The third aim is to highlight ties between the foundational investigation of QM infinity and philosophy more broadly construed, in particular by using the interpretive problems discussed to motivate new ways to think about the nature of physical possibility and the problem of scientific realism.

Interpreting Quantum Theories

Interpreting Quantum Theories
Author :
Publisher : Oxford University Press
Total Pages : 398
Release :
ISBN-10 : 9780199535408
ISBN-13 : 019953540X
Rating : 4/5 (08 Downloads)

Synopsis Interpreting Quantum Theories by : Laura Ruetsche

Philosophers of quantum mechanics have generally addressed exceedingly simple systems. Laura Ruetsche offers a much-needed study of the interpretation of more complicated systems, and an underexplored family of physical theories, such as quantum field theory and quantum statistical mechanics, showing why they repay philosophical attention.

Interpreting Quantum Theories

Interpreting Quantum Theories
Author :
Publisher : OUP Oxford
Total Pages : 0
Release :
ISBN-10 : 0199681066
ISBN-13 : 9780199681068
Rating : 4/5 (66 Downloads)

Synopsis Interpreting Quantum Theories by : Laura Ruetsche

Philosophers of quantum mechanics have generally addressed exceedingly simple systems. Laura Ruetsche offers a much-needed study of the interpretation of more complicated systems, and an underexplored family of physical theories, such as quantum field theory and quantum statistical mechanics, showing why they repay philosophical attention.

The Transactional Interpretation of Quantum Mechanics

The Transactional Interpretation of Quantum Mechanics
Author :
Publisher : Cambridge University Press
Total Pages : 261
Release :
ISBN-10 : 9781108830447
ISBN-13 : 1108830447
Rating : 4/5 (47 Downloads)

Synopsis The Transactional Interpretation of Quantum Mechanics by : Ruth E. Kastner

Provides a comprehensive exposition of the transactional interpretation of quantum mechanics and its compatibility with relativity.

The Emergent Multiverse

The Emergent Multiverse
Author :
Publisher : OUP Oxford
Total Pages : 547
Release :
ISBN-10 : 9780191057397
ISBN-13 : 0191057398
Rating : 4/5 (97 Downloads)

Synopsis The Emergent Multiverse by : David Wallace

The Emergent Multiverse presents a striking new account of the 'many worlds' approach to quantum theory. The point of science, it is generally accepted, is to tell us how the world works and what it is like. But quantum theory seems to fail to do this: taken literally as a theory of the world, it seems to make crazy claims: particles are in two places at once; cats are alive and dead at the same time. So physicists and philosophers have often been led either to give up on the idea that quantum theory describes reality, or to modify or augment the theory. The Everett interpretation of quantum mechanics takes the apparent craziness seriously, and asks, 'what would it be like if particles really were in two places at once, if cats really were alive and dead at the same time'? The answer, it turns out, is that if the world were like that—if it were as quantum theory claims—it would be a world that, at the macroscopic level, was constantly branching into copies—hence the more sensationalist name for the Everett interpretation, the 'many worlds theory'. But really, the interpretation is not sensationalist at all: it simply takes quantum theory seriously, literally, as a description of the world. Once dismissed as absurd, it is now accepted by many physicists as the best way to make coherent sense of quantum theory. David Wallace offers a clear and up-to-date survey of work on the Everett interpretation in physics and in philosophy of science, and at the same time provides a self-contained and thoroughly modern account of it—an account which is accessible to readers who have previously studied quantum theory at undergraduate level, and which will shape the future direction of research by leading experts in the field.

The Everett Interpretation of Quantum Mechanics

The Everett Interpretation of Quantum Mechanics
Author :
Publisher : Princeton University Press
Total Pages : 402
Release :
ISBN-10 : 9781400842742
ISBN-13 : 1400842743
Rating : 4/5 (42 Downloads)

Synopsis The Everett Interpretation of Quantum Mechanics by : Jeffrey A. Barrett

Hugh Everett III was an American physicist best known for his many-worlds interpretation of quantum mechanics, which formed the basis of his PhD thesis at Princeton University in 1957. Although counterintuitive, Everett's revolutionary formulation of quantum mechanics offers the most direct solution to the infamous quantum measurement problem--that is, how and why the singular world of our experience emerges from the multiplicities of alternatives available in the quantum world. The many-worlds interpretation postulates the existence of multiple universes. Whenever a measurement-like interaction occurs, the universe branches into relative states, one for each possible outcome of the measurement, and the world in which we find ourselves is but one of these many, but equally real, possibilities. Everett's challenge to the orthodox interpretation of quantum mechanics was met with scorn from Niels Bohr and other leading physicists, and Everett subsequently abandoned academia to conduct military operations research. Today, however, Everett's formulation of quantum mechanics is widely recognized as one of the most controversial but promising physical theories of the last century. In this book, Jeffrey Barrett and Peter Byrne present the long and short versions of Everett's thesis along with a collection of his explanatory writings and correspondence. These primary source documents, many of them newly discovered and most unpublished until now, reveal how Everett's thinking evolved from his days as a graduate student to his untimely death in 1982. This definitive volume also features Barrett and Byrne's introductory essays, notes, and commentary that put Everett's extraordinary theory into historical and scientific perspective and discuss the puzzles that still remain.

Interpreting the Quantum World

Interpreting the Quantum World
Author :
Publisher : Cambridge University Press
Total Pages : 312
Release :
ISBN-10 : 052165386X
ISBN-13 : 9780521653862
Rating : 4/5 (6X Downloads)

Synopsis Interpreting the Quantum World by : Jeffrey Bub

Philosophy of physics title by highly regarded author, fully revised for this paperback edition.

Understanding Quantum Mechanics

Understanding Quantum Mechanics
Author :
Publisher : Princeton University Press
Total Pages : 326
Release :
ISBN-10 : 0691004358
ISBN-13 : 9780691004358
Rating : 4/5 (58 Downloads)

Synopsis Understanding Quantum Mechanics by : Roland Omnès

Here Roland Omnès offers a clear, up-to-date guide to the conceptual framework of quantum mechanics. In an area that has provoked much philosophical debate, Omnès has achieved high recognition for his Interpretation of Quantum Mechanics (Princeton 1994), a book for specialists. Now the author has transformed his own theory into a short and readable text that enables beginning students and experienced physicists, mathematicians, and philosophers to form a comprehensive picture of the field while learning about the most recent advances. This new book presents a more streamlined version of the Copenhagen interpretation, showing its logical consistency and completeness. The problem of measurement is a major area of inquiry, with the author surveying its history from Planck to Heisenberg before describing the consistent-histories interpretation. He draws upon the most recent research on the decoherence effect (related to the modern resolution of the famous Schrödinger's cat problem) and an exact formulation of the correspondence between quantum and particle physics (implying a derivation of classical determinism from quantum probabilism). Interpretation is organized with the help of a universal and sound language using so-called consistent histories. As a language and a method, it can now be shown to be free of ambiguity and it makes interpretation much clearer and closer to common sense.

Entanglement, Information, and the Interpretation of Quantum Mechanics

Entanglement, Information, and the Interpretation of Quantum Mechanics
Author :
Publisher : Springer Science & Business Media
Total Pages : 316
Release :
ISBN-10 : 9783540921288
ISBN-13 : 3540921281
Rating : 4/5 (88 Downloads)

Synopsis Entanglement, Information, and the Interpretation of Quantum Mechanics by : Gregg Jaeger

Entanglement was initially thought by some to be an oddity restricted to the realm of thought experiments. However, Bell’s inequality delimiting local - havior and the experimental demonstration of its violation more than 25 years ago made it entirely clear that non-local properties of pure quantum states are more than an intellectual curiosity. Entanglement and non-locality are now understood to ?gure prominently in the microphysical world, a realm into which technology is rapidly hurtling. Information theory is also increasingly recognized by physicists and philosophers as intimately related to the foun- tions of mechanics. The clearest indicator of this relationship is that between quantum information and entanglement. To some degree, a deep relationship between information and mechanics in the quantum context was already there to be seen upon the introduction by Max Born and Wolfgang Pauli of the idea that the essence of pure quantum states lies in their provision of probabilities regarding the behavior of quantum systems, via what has come to be known as the Born rule. The signi?cance of the relationship between mechanics and information became even clearer with Leo Szilard’s analysis of James Clerk Maxwell’s infamous demon thought experiment. Here, in addition to examining both entanglement and quantum infor- tion and their relationship, I endeavor to critically assess the in?uence of the study of these subjects on the interpretation of quantum theory.

The Cellular Automaton Interpretation of Quantum Mechanics

The Cellular Automaton Interpretation of Quantum Mechanics
Author :
Publisher : Springer
Total Pages : 296
Release :
ISBN-10 : 9783319412856
ISBN-13 : 331941285X
Rating : 4/5 (56 Downloads)

Synopsis The Cellular Automaton Interpretation of Quantum Mechanics by : Gerard 't Hooft

This book presents the deterministic view of quantum mechanics developed by Nobel Laureate Gerard 't Hooft. Dissatisfied with the uncomfortable gaps in the way conventional quantum mechanics meshes with the classical world, 't Hooft has revived the old hidden variable ideas, but now in a much more systematic way than usual. In this, quantum mechanics is viewed as a tool rather than a theory. The author gives examples of models that are classical in essence, but can be analysed by the use of quantum techniques, and argues that even the Standard Model, together with gravitational interactions, might be viewed as a quantum mechanical approach to analysing a system that could be classical at its core. He shows how this approach, even though it is based on hidden variables, can be plausibly reconciled with Bell's theorem, and how the usual objections voiced against the idea of ‘superdeterminism' can be overcome, at least in principle. This framework elegantly explains - and automatically cures - the problems of the wave function collapse and the measurement problem. Even the existence of an “arrow of time" can perhaps be explained in a more elegant way than usual. As well as reviewing the author’s earlier work in the field, the book also contains many new observations and calculations. It provides stimulating reading for all physicists working on the foundations of quantum theory.