"Version: 20240801"--Title page verso.Includes bibliographical references.1. Introduction -- 2. Classical nature of light -- 2.1. Electromagnetic waves -- 2.2. Polarization -- 2.3. Preparatory experimental explorations -- 2.4. C1 : Investigating polarization of light through Jones calculus -- 2.5. C2 : Fourier analysis and peanut plots -- 2.6. C3 : Interference and erasure of which-way informat…
"Version: 20240901"--Title page verso.Includes bibliographical references.1. Introduction -- 2. Theoretical aspects -- 2.1. The Jaynes-Cummings model -- 2.2. Jaynes-Cummings dynamics -- 2.3. Driven and open Jaynes-Cummings physics -- 2.4. Beyond the rotating-wave approximation : the quantum Rabi model -- 2.5. Extended Jaynes-Cummings models -- 2.6. Extended Jaynes-Cummings models turned into si…
"Version: 20140401"--Title page verso.Includes bibliographical references.Preface -- Acknowledgements -- Biography -- Introduction -- Quantum information -- Quantum communications -- Quantum computing -- Quantum sensors -- Relativistic quantum information -- SummarySpecial and general relativity -- Special relativity -- Lorentz transformations -- Lagrangian dynamics -- The principle of equivale…
"Version: 20150301"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.Preface -- Author biographies -- Introduction -- Newton relativity and one-particle Galilean quantum theory -- Unitary representations of the Galilei group -- Complete systems of commuting observables -- Non-inertial transformations, fictit…
"Version: 20180901"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.1. Essentials -- 1.1. Intuition -- 1.2. Domains -- 1.3. Measurement -- 1.4. The postulates of quantum mechanics2. Majorization -- 2.1. The relation to domain theory -- 2.2. Ensembles -- 2.3. Local operations and classical communication -- 2…
"Version: 20190801"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.1. Motivation -- 2. Getting ready -- 2.1. Anticipatory set -- 2.2. Objective -- 2.3. Purpose3. Giving information -- 3.1. Instructional input -- 3.2. Modeling -- 3.3. Instructional input -- 3.4. Modeling -- 3.5. Instructional input -- 3.6. Modeling -- 3.7. Checking for unders…
"Version: 20190701"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.part I. Kinematics. 1. Motivation -- 2. Getting ready -- 2.1. Anticipatory set -- 2.2. Objective -- 2.3. Purpose3. Giving information -- 3.1. Instructional input -- 3.2. Modeling -- 3.3. Checking for understanding4. Keeping information -- 4.1. Closure -- 4.2. Independent prac…
"Version: 20190701"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.part I. Newton's laws of motion. 1. Motivation -- 2. Getting ready -- 2.1. Anticipatory set -- 2.2. Objective -- 2.3. Purpose3. Giving information -- 3.1. Instructional input -- 3.2. Modeling -- 3.3. Checking for understanding4. Keeping inf…
"Version: 20190701"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.Includes bibliographical references.1. Motivation -- 2. Getting ready -- 2.1. Anticipatory set -- 2.2. Objective -- 2.3. Purpose3. Giving information -- 3.1. Instructional input -- 3.2. Modeling -- 3.3. Instructional input -- 3.4. Modeling -- 3.5. Checking for understanding4.…
"Version: 20190801"--Title page verso."A Morgan & Claypool publication as part of IOP Concise Physics"--Title page verso.part I. Conservation laws. 1. Motivation -- 2. Getting ready -- 2.1. Anticipatory set -- 2.2. Objective -- 2.3. Purpose3. Giving information -- 3.1. Instructional input -- 3.2. Modeling -- 3.3. Instructional input -- 3.4. Modeling -- 3.5. Instructional input -- 3.6. Modeling …