1 801 kr
Skickas
1 801 kr
Skickas
1 908 kr
Skickas inom 5-8 vardagar
The Jaynes-Cummings Model (JCM) has recently been receiving increased attention as one of the simplest, yet intricately nonlinear, models of quantum physics. Emphasising the omnipresence of the JCM across a range of disciplines, this comprehensive review conveys to the reader the fundamental generality of its formalism, looking at a wide range of applications in specific physical systems and across disciplines including atomic physics, quantum optics, solid-state physics and quantum information sciences. An ideal reference for researchers in quantum physics and quantum optics, the book also comprises an accessible introduction for students engaged with non-equilibrium quantum phase transitions, quantum computing and simulation, and quantum many-body physics.
Key Features:
Collects JCM physics and applications scattered across literature and different applications. The exposition guides the reader through a rich and appealing landscape interlacing quantum optics and condensed-matter physics. All chapters discuss theory and experiment, linked historically to the development of the various directions stemming from JC physics. This is accompanied by a thorough list of references to the key publications. The presentation is kept concise, while continuous text is interspersed with various illustrations and an economical use of mathematical expressions.1 211 kr
Skickas inom 5-8 vardagar
This book provides an easy-to-read but practical introduction to quantum gate simulation to serious learners of the subject. Fundamental physical concepts and selected programming examples of quantum simulations are described for readers who want to use the simulation with a physical understanding background without the use of rigorous mathematics.
This book is intended to offer a self-study book for senior and graduate students of physics, computer science, and mathematics who want to learn and write quantum codes. It may also serve as a textbook or a reference at academia and industries. Readers are expected to have introductory knowledge of linear algebra although it is briefly reviewed in this book. Some experience of computer programming is helpful, but no prior knowledge of Python is required for writing the quantum codes shown in this book.
Key Features:
Easy-to-read content for self-paced readers.Many examples with background physics.Detailed description of entanglement and teleportation.Guide to industrial resources.Includes codes and video.DIY quantum gate simulations.1 928 kr
Skickas inom 5-8 vardagar
1 211 kr
Skickas inom 5-8 vardagar
1 211 kr
Skickas inom 5-8 vardagar
This book is valuable for laboratory developers, researchers and teachers who would like to recreate a similar suite of experiments for students and early career researchers. These experiments enliven theoretical descriptions of key ideas from quantum information and quantum computing, providing accessible means to generate, manipulate and measure quantum states, and understand their implications for the foundations of quantum mechanics. This new edition features additional experiments related to quantum entanglement and non-local quantum erasure and has restructured previous descriptions. Data processing in an open-source language is described. The appendix on programming FGPAs is considerably enhanced.
Key Features:
Worked examples showing basic calculations for computing probabilities from projective measurements, the effect of unitary operators on states, and computing density matrices, expectation values, fidelities, and purities. An intuitive description of ideas from quantum information and quantum optics. Correlating experimental data, which is statistical in nature, with predictions of quantum optical theory. Experiments can be virtually recreated using data from real experiments to manipulate, compute and plot expectation values, errors, density matrices etc. Each chapter begins with an introduction and discusses the placement of the chapter's material in the wider scheme.