Formulation and Numerical Solution of Quantum Control Problems

Author:   Alfio Borzi ,  Gabriele Ciaramella ,  Martin Sprengel
Publisher:   Society for Industrial & Applied Mathematics,U.S.
ISBN:  

9781611974836


Pages:   390
Publication Date:   30 August 2017
Format:   Hardback
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Our Price $169.40 Quantity:  
Add to Cart

Share |

Formulation and Numerical Solution of Quantum Control Problems


Add your own review!

Overview

This book provides an introduction to representative nonrelativistic quantum control problems and their theoretical analysis and solution via modern computational techniques. The quantum theory framework is based on the Schrödinger picture, and the optimization theory, which focuses on functional spaces, is based on the Lagrange formalism. The computational techniques represent recent developments that have resulted from combining modern numerical techniques for quantum evolutionary equations with sophisticated optimization schemes. Both finite and infinite-dimensional models are discussed, including the three-level Lambda system arising in quantum optics, multispin systems in NMR, a charged particle in a well potential, Bose–Einstein condensates, multiparticle spin systems, and multiparticle models in the time-dependent density functional framework. This self-contained book covers the formulation, analysis, and numerical solution of quantum control problems and bridges scientific computing, optimal control and exact controllability, optimization with differential models, and the sciences and engineering that require quantum control methods.

Full Product Details

Author:   Alfio Borzi ,  Gabriele Ciaramella ,  Martin Sprengel
Publisher:   Society for Industrial & Applied Mathematics,U.S.
Imprint:   Society for Industrial & Applied Mathematics,U.S.
Weight:   1.040kg
ISBN:  

9781611974836


ISBN 10:   1611974836
Pages:   390
Publication Date:   30 August 2017
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Preface Chapter 1: Introduction Chapter 2: Quantum mechanics and the Schrödinger equation Chapter 3: Optimal control theory for quantum systems Chapter 4: Controllability of quantum systems Chapter 5: Discretization schemes Chapter 6: Numerical optimization methods Chapter 7: Application to quantum control problems Appendix Bibliography Index

Reviews

Author Information

Alfio Borzì is professor and chair of scientific computing at the Institute for Mathematics of the University of Würzburg, Germany. He has contributed considerably to the development of computational methodologies for simulation and optimization with PDEs, with a focus on multilevel methods and on the modeling and numerical solution of quantum and stochastic optimal control problems. Gabriele Ciaramella is currently a postdoctoral researcher in the Numerical Analysis group of the University of Geneva, Switzerland. He has contributed to the development of methodologies for nonsmooth optimization and control of finite- and infinite-dimensional quantum systems and to the analysis of domain-decomposition methods. Martin Sprengel is currently a doctoral student in the Scientific Computing group of the Institute for Mathematics of the University of Würzburg, Germany. He works on the formulation and solution of optimal control problems in the framework of time-dependent density functional theory.

Tab Content 6

Author Website:  

Customer Reviews

Recent Reviews

No review item found!

Add your own review!

Countries Available

All regions
Latest Reading Guide

Aorrng

Shopping Cart
Your cart is empty
Shopping cart
Mailing List