Quantum Computation and Quantum Information

Quantum Computation and Quantum Information
Author :
Publisher : Cambridge University Press
Total Pages : 709
Release :
ISBN-10 : 9781139495486
ISBN-13 : 1139495488
Rating : 4/5 (86 Downloads)

Synopsis Quantum Computation and Quantum Information by : Michael A. Nielsen

One of the most cited books in physics of all time, Quantum Computation and Quantum Information remains the best textbook in this exciting field of science. This 10th anniversary edition includes an introduction from the authors setting the work in context. This comprehensive textbook describes such remarkable effects as fast quantum algorithms, quantum teleportation, quantum cryptography and quantum error-correction. Quantum mechanics and computer science are introduced before moving on to describe what a quantum computer is, how it can be used to solve problems faster than 'classical' computers and its real-world implementation. It concludes with an in-depth treatment of quantum information. Containing a wealth of figures and exercises, this well-known textbook is ideal for courses on the subject, and will interest beginning graduate students and researchers in physics, computer science, mathematics, and electrical engineering.

Quantum Information, Computation and Communication

Quantum Information, Computation and Communication
Author :
Publisher : Cambridge University Press
Total Pages : 209
Release :
ISBN-10 : 9781107014466
ISBN-13 : 1107014468
Rating : 4/5 (66 Downloads)

Synopsis Quantum Information, Computation and Communication by : Jonathan A. Jones

Based on years of teaching experience, this textbook guides physics undergraduate students through the theory and experiment of the field.

Experimental Quantum Computation and Information

Experimental Quantum Computation and Information
Author :
Publisher : IOS Press
Total Pages : 562
Release :
ISBN-10 : 9781614990048
ISBN-13 : 1614990042
Rating : 4/5 (48 Downloads)

Synopsis Experimental Quantum Computation and Information by : F. de Martini

This Fermi Summer School of Physics on "Experimental Quantum Information and Computing" represents a primer on one of the most intriguing and rapidly expanding new areas of physics. In this part, the interest in quantum information (QI) science is due to the discovery that a computer operating on quantum mechanical principles can solve certain important computational problems exponentially faster than any conceivable classical computer. But this interest is also due to the interdisciplinary nature of the field: the rapid growth is attributable, in part, to the stimulating confluence of researchers and ideas from physics, chemistry, mathematics, information theory, and computer science. Physics plays a paramount role in QI science, as we realize that computing is itself a physical process subject to physical laws. The incredible growth of classical computers and information processors in the 20th century stems from Turing's notion that a computer is independent of the physical device actually being used; be they relays, vacuum tubes, or semiconductor transistors. As we strive to build useful quantum information processors into the 21st century, we thus look for any physical system that obeys the laws of quantum mechanics, from single photons and atoms to quantum superconducting devices. These Fermi lectures take us on a journey through these and other promising current experimental candidates for QI processing, spanning quantum optics and laser physics, atomic and molecular physics, physical chemistry, and condensed-matter physics. While this broad coverage of experimental physics represents a challenge to the student, such an appreciation of these fields will be critical in the future success of quantum technology. Indeed, the most exciting feature of QI science is that the technology ultimately leading to a quantum processor is likely presently unknown.

Principles of Quantum Computation and Information

Principles of Quantum Computation and Information
Author :
Publisher : World Scientific Publishing Company
Total Pages : 0
Release :
ISBN-10 : 9813237228
ISBN-13 : 9789813237223
Rating : 4/5 (28 Downloads)

Synopsis Principles of Quantum Computation and Information by : Giuliano Benenti

Quantum computation and information is a rapidly developing interdisciplinary field. It is not easy to understand its fundamental concepts and central results without facing numerous technical details. This book provides the reader with a useful guide. In particular, the initial chapters offer a simple and self-contained introduction; no previous knowledge of quantum mechanics or classical computation is required. Various important aspects of quantum computation and information are covered in depth, starting from the foundations (the basic concepts of computational complexity, energy, entropy, and information, quantum superposition and entanglement, elementary quantum gates, the main quantum algorithms, quantum teleportation, and quantum cryptography) up to advanced topics (like entanglement measures, quantum discord, quantum noise, quantum channels, quantum error correction, quantum simulators and tensor networks). It can be used as a broad range textbook for a course in quantum information and computation, both for upper-level undergraduate students and for graduate students. It contains a large number of solved exercises, which are an essential complement to the text, as they will help the student to become familiar with the subject. The book may also be useful as general education for readers who want to know the fundamental principles of quantum information and computation and who have the basic background acquired from their undergraduate course in physics, mathematics, or computer science, as well as for researchers interested in some of the latest spin-off of the field, including the use of quantum information in the theories of many-body systems.

Quantum Computation and Quantum Information Theory

Quantum Computation and Quantum Information Theory
Author :
Publisher : World Scientific
Total Pages : 531
Release :
ISBN-10 : 9789810241179
ISBN-13 : 9810241178
Rating : 4/5 (79 Downloads)

Synopsis Quantum Computation and Quantum Information Theory by : Chiara Macchiavello

Quantum Entanglement Manipulation - Quantum Algorithms - Quantum Complexity - Quantum Error Correction - Quantum Channels - Entanglement Purification and Long-Distance Quantum Communication - Quantum Key Distribution - Cavity Quantum Electrodynamics - Quantum Computation with Ion Traps - Josephson Junctions and Quantum Computation - Quantum Computing in Optical Lattices - Quantum Computation and Quantum Communication with Electrons - NMR Quantum Computing.

Quantum Computing

Quantum Computing
Author :
Publisher : MIT Press
Total Pages : 389
Release :
ISBN-10 : 9780262015066
ISBN-13 : 0262015064
Rating : 4/5 (66 Downloads)

Synopsis Quantum Computing by : Eleanor G. Rieffel

A thorough exposition of quantum computing and the underlying concepts of quantum physics, with explanations of the relevant mathematics and numerous examples.

Quantum Information and Quantum Computing

Quantum Information and Quantum Computing
Author :
Publisher : World Scientific
Total Pages : 194
Release :
ISBN-10 : 9789814425223
ISBN-13 : 9814425222
Rating : 4/5 (23 Downloads)

Synopsis Quantum Information and Quantum Computing by : Mikio Nakahara

The open research center project "Interdisciplinary fundamental research toward realization of a quantum computer" has been supported by the Ministry of Education, Japan for five years. This is a collection of the research outcomes by the members engaged in the project. To make the presentation self-contained, it starts with an overview by Mikio Nakahara, which serves as a concise introduction to quantum information and quantum computing. Subsequent contributions include subjects from physics, chemistry, mathematics, and information science, reflecting upon the wide variety of scientists working under this project. These contributions introduce NMR quantum computing and related techniques, number theory and coding theory, quantum error correction, photosynthesis, non-classical correlations and entanglement, neutral atom quantum computer, among others. Each of the contributions will serve as a short introduction to these cutting edge research fields.

The Theory of Quantum Information

The Theory of Quantum Information
Author :
Publisher :
Total Pages : 599
Release :
ISBN-10 : 9781107180567
ISBN-13 : 1107180562
Rating : 4/5 (67 Downloads)

Synopsis The Theory of Quantum Information by : John Watrous

Formal development of the mathematical theory of quantum information with clear proofs and exercises. For graduate students and researchers.

A Short Introduction to Quantum Information and Quantum Computation

A Short Introduction to Quantum Information and Quantum Computation
Author :
Publisher : Cambridge University Press
Total Pages : 179
Release :
ISBN-10 : 9781139457040
ISBN-13 : 1139457047
Rating : 4/5 (40 Downloads)

Synopsis A Short Introduction to Quantum Information and Quantum Computation by : Michel Le Bellac

Quantum information and computation is a rapidly expanding and cross-disciplinary subject. This book, first published in 2006, gives a self-contained introduction to the field for physicists, mathematicians and computer scientists who want to know more about this exciting subject. After a step-by-step introduction to the quantum bit (qubit) and its main properties, the author presents the necessary background in quantum mechanics. The core of the subject, quantum computation, is illustrated by a detailed treatment of three quantum algorithms: Deutsch, Grover and Shor. The final chapters are devoted to the physical implementation of quantum computers, including the most recent aspects, such as superconducting qubits and quantum dots, and to a short account of quantum information. Written at a level suitable for undergraduates in physical sciences, no previous knowledge of quantum mechanics is assumed, and only elementary notions of physics are required. The book includes many short exercises, with solutions available to instructors through [email protected].

NMR Quantum Information Processing

NMR Quantum Information Processing
Author :
Publisher : Elsevier
Total Pages : 265
Release :
ISBN-10 : 9780080497525
ISBN-13 : 0080497527
Rating : 4/5 (25 Downloads)

Synopsis NMR Quantum Information Processing by : Ivan Oliveira

Quantum Computation and Quantum Information (QIP) deals with the identification and use of quantum resources for information processing. This includes three main branches of investigation: quantum algorithm design, quantum simulation andquantum communication, including quantum cryptography. Along the past few years, QIP has become one of the most active area ofresearch in both, theoretical and experimental physics, attracting students and researchers fascinated, not only by the potentialpractical applications of quantum computers, but also by the possibility of studying fundamental physics at the deepest level of quantum phenomena.NMR Quantum Computation and Quantum Information Processing describes the fundamentals of NMR QIP, and the main developments which can lead to a large-scale quantum processor. The text starts with a general chapter onthe interesting topic of the physics of computation. The very first ideas which sparkled the development of QIP came from basic considerations of the physical processes underlying computational actions. In Chapter 2 it is made an introduction to NMR, including the hardware and other experimental aspects of the technique. InChapter 3 we revise the fundamentals of Quantum Computation and Quantum Information. The chapter is very much based on the extraordinary book of Michael A. Nielsen and Isaac L. Chuang, withan upgrade containing some of the latest developments, such as QIP in phase space, and telecloning. Chapter 4 describes how NMRgenerates quantum logic gates from radiofrequency pulses, upon which quantum protocols are built. It also describes the important technique of Quantum State Tomography for both, quadrupole and spin1/2 nuclei. Chapter 5 describes some of the main experiments of quantum algorithm implementation by NMR, quantum simulation and QIP in phase space. The important issue of entanglement in NMR QIPexperiments is discussed in Chapter 6. This has been a particularly exciting topic in the literature. The chapter contains a discussionon the theoretical aspects of NMR entanglement, as well as some of the main experiments where this phenomenon is reported. Finally, Chapter 7 is an attempt to address the future of NMR QIP, based invery recent developments in nanofabrication and single-spin detection experiments. Each chapter is followed by a number of problems and solutions.* Presents a large number of problems with solutions, ideal for students* Brings together topics in different areas: NMR, nanotechnology, quantum computation * Extensive references