‏461.00 ₪

Quantum Optomechanics

‏461.00 ₪
ISBN13
9781482259155
יצא לאור ב
Oakville
זמן אספקה
במלאי, (זמן אספקה 5 ימי עסקים)
עמודים
376
פורמט
Hardback
תאריך יציאה לאור
10 בדצמ׳ 2015
"Version darte: 20151014"--Title page verso.
Written by leading experimentalist Warwick P. Bowen and prominent theoretician Gerard J. Milburn, Quantum Optomechanics discusses modern developments in this novel field from experimental and theoretical standpoints. The authors share their insight on a range of important topics, including optomechanical cooling and entanglement; quantum limits on measurement precision and how to overcome them via back-action evading measurements; feedback control; single photon and nonlinear optomechanics; optomechanical synchronization; coupling of optomechanical systems to microwave circuits and two-level systems, such as atoms and superconducting qubits; and optomechanical tests of gravitational decoherence. The book first introduces the basic physics of quantum harmonic oscillators and their interactions with their environment. It next discusses the radiation pressure interaction between light and matter, deriving common Hamiltonians used in quantum optomechanics. It then focuses on the linearized regime of quantum optomechanics before exploring scenarios where the simple linearized picture of quantum optomechanics no longer holds. The authors move on to hybrid optomechanical systems in which the canonical quantum optomechanical system is coupled to another quantum object. They explain how an alternative form of a hybrid optomechanical system leads to the phenomenon of synchronization. They also consider the impact of quantum optomechanics on tests of gravitational physics.
מידע נוסף
עמודים 376
פורמט Hardback
ISBN10 148225915X
יצא לאור ב Oakville
תאריך יציאה לאור 10 בדצמ׳ 2015
תוכן עניינים Quantum Harmonic Oscillators QUANTISING THE HARMONIC OSCILLATOR FLUCTUATIONS AND DISSIPATION IN A QUANTUM HARMONIC OSCILLATOR MODELLING OPEN SYSTEM DYNAMICS VIA QUANTUM LANGEVIN EQUATIONS QUANTUM LANGEVIN EQUATION WITHIN THE ROTATING WAVE APPROXIMATION Radiation Pressure Interaction BASIC RADIATION PRESSURE INTERACTION EFFECTIVE QUANTISATION DISPERSIVE OPTOMECHANICS ELECTRO AND OPTOMECHANICAL SYSTEMS MECHANICAL AND OPTICAL DECOHERENCE RATES DYNAMICS OF DISPERSIVE OPTOMECHANICAL SYSTEMS LINEARISATION OF THE OPTOMECHANICAL HAMILTONIAN DISSIPATIVE OPTOMECHANICS Linear Quantum Measurement of Mechanical Motion FREE MASS STANDARD QUANTUM LIMIT RADIATION PRESSURE SHOT NOISE MEASUREMENT OF MECHANICAL MOTION STANDARD QUANTUM LIMIT ON MECHANICAL POSITION MEASUREMENT STANDARD QUANTUM LIMIT FOR GRAVITATIONAL WAVE INTERFEROMETRY STANDARD QUANTUM LIMIT FOR FORCE MEASUREMENT Coherent Interaction between Light and Mechanics STRONG COUPLING OPTICAL COOLING OF MECHANICAL MOTION OPTOMECHANICALLY INDUCED TRANSPARENCY OPTOMECHANICAL ENTANGLEMENT MECHANICAL SQUEEZING OF LIGHT Linear Quantum Control of Mechanical Motion STOCHASTIC MASTER EQUATION INCLUDING DISSIPATION FEEDBACK COOLING BACK-ACTION EVADING MEASUREMENT SURPASSING THE STANDARD QUANTUM LIMIT USING SQUEEZED LIGHT Single Photon Optomechanics OPTOMECHANICAL PHOTON BLOCKADE SINGLE PHOTON STATES SINGLE PHOTON PULSE INCIDENT ON A SINGLE-SIDED OPTOMECHANICAL CAVITY DOUBLE CAVITY OPTOMECHANICAL SYSTEM MACROSCOPIC SUPERPOSITION STATES USING SINGLE PHOTON OPTOMECHANICS Nonlinear Optomechanics THE DUFFING NONLINEARITY THE QUANTUM DUFFING OSCILLATOR NONLINEAR DAMPING SELF-PULSING AND LIMIT CYCLES NONLINEAR MEASUREMENT OF A MECHANICAL RESONATOR Hybrid Optomechanical Systems ELECTROMECHANICAL SYSTEMS COUPLING A MECHANICAL RESONATOR AND A TWO-LEVEL SYSTEM MICROWAVE - OPTICAL INTERFACE Arrays of Optomechanical Systems SYNCHRONISATION IN OPTOMECHANICAL ARRAYS IRREVERSIBLY COUPLED ARRAYS OF OPTOMECHANICAL SYSTEMS Gravitational Quantum Physics and Optomechanics WHAT IS GRAVITATIONAL DECOHERENCE? OPTOMECHANICAL TESTS OF GRAVITATIONAL DECOHERENCE TESTS OF NONSTANDARD GRAVITATIONAL EFFECTS USING GEOMETRIC PHASE Appendix: Linear Detection of Optical Fields EFFECT OF INEFFICIENCIES LINEAR DETECTION OF OPTICAL FIELDS POWER SPECTRAL DENSITY OBTAINED BY HETERODYNE DETECTION CHARACTERISING THE OPTOMECHANICAL COOPERATIVITY CHARACTERISING THE TEMPERATURE OF A MECHANICAL OSCILLATOR
זמן אספקה במלאי, (זמן אספקה 5 ימי עסקים)