Ray LaPierre LaPierre Getting Started in Quantum Optics

Getting Started in Quantum Optics

von Ray LaPierre

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Beschreibung

This book, based on classroom-tested lecture notes, provides a self-contained one semester undergraduate course on quantum optics, accessible to students (and other readers) who have completed an introductory quantum mechanics course and are familiar with Dirac notation and the concept of entanglement. The book covers canonical quantization, the harmonic oscillator, vacuum fluctuations, Fock states, the single photon state, quantum optical treatment of the beam splitter and the interferometer, multimode quantized light, and coherent and incoherent states. Metrology is a particular area of emphasis, with the book culminating in a treatment of squeezed light and its use in the laser interferometer gravitational-wave observatory (LIGO). The Heisenberg limit is described, along with NOON states and their application in super-sensitivity, super-resolution and quantum lithography. Applications of entanglement and coincidence measurements are described including ghost imaging, quantum illumination, absolute photodetector calibration, and interaction-free measurement. With quantum optics playing a central role in the so-called “second quantum revolution,” this book, equipped with plenty of exercises and worked examples, will leave students well prepared to enter graduate study or industry.
This book, based on classroom-tested lecture notes, provides a self-contained one semester undergraduate course on quantum optics, accessible to students (and other readers) who have completed an introductory quantum mechanics course and are familiar with Dirac notation and the concept of entanglement. The book covers canonical quantization, the harmonic oscillator, vacuum fluctuations, Fock states, the single photon state, quantum optical treatment of the beam splitter and the interferometer, multimode quantized light, and coherent and incoherent states. Metrology is a particular area of emphasis, with the book culminating in a treatment of squeezed light and its use in the laser interferometer gravitational-wave observatory (LIGO). The Heisenberg limit is described, along with NOON states and their application in super-sensitivity, super-resolution and quantum lithography. Applications of entanglement and coincidence measurements are described including ghost imaging, quantum illumination, absolute photodetector calibration, and interaction-free measurement. With quantum optics playing a central role in the so-called “second quantum revolution,” this book, equipped with plenty of exercises and worked examples, will leave students well prepared to enter graduate study or industry.
Introduces quantum optics at undergraduate level with only minimal prerequisites Includes worked examples and exercises, with a solutions manual for instructors Can be taught to undergraduates or beginning graduate students in a single semester Request lecturer material: sn.pub/lecturer-material

Autor*in

Ray LaPierre

Themen in »Getting Started in Quantum Optics«

Undergraduate quantum optics textbook Quantum optics textbook Quantum optics for undergraduates Introduction to quantum optics Harmonic oscillator Quantization of light Single photon physics Quantized radiation Coherent states Incoherent states Homodyne detection Heterodyne detection Interferometry Squeezed states Quantum imaging

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Details

ISBN: 9783031124341
Verlag: Springer International Publishing
Erscheinung: 22.11.2022

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