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Quantum States of Light: SpringerBriefs in Mathematical Physics, cartea 10

Autor Akira Furusawa
en Limba Engleză Paperback – 18 dec 2015
This book explains what quantum states of light look like. Of special interest, a single photon state is explained by using a wave picture, showing that it corresponds to the complementarity of a quantum. Also explained is how light waves are created by photons, again corresponding to the complementarity of a quantum. The author shows how an optical wave is created by superposition of a "vacuum" and a single photon as a typical example. Moreover, squeezed states of light are explained as "longitudinal" waves of light and Schrödinger's cat states as macroscopic superposition states.
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Specificații

ISBN-13: 9784431559580
ISBN-10: 4431559582
Pagini: 104
Ilustrații: IX, 104 p. 92 illus., 30 illus. in color.
Dimensiuni: 155 x 235 x 7 mm
Greutate: 1.31 kg
Ediția:1st ed. 2015
Editura: Springer
Colecția Springer
Seria SpringerBriefs in Mathematical Physics

Locul publicării:Tokyo, Japan

Public țintă

Research

Cuprins

1. Quantum states of light.- 1-1 Quantum optics.- 1-2 Coherent states.- 1-3 Balanced homodyne measurements.- 1-4 Single-photon state.- 1-5 Fock states.- 1-6 Super position of a vacuum and a single photon.- 1-7 Coherent states and Schrodinger's cat states.- 1-8 Wigner function.- 1-9 Super position of a vacuum and a two-photon state.- 1-10 Squeezed states.- 1-11 Squeezing operation.- 1-12 Quantum entanglement.- 2. Generation of quantum states of light.- 2-1 Generation of coherent states.- 2-2 Generation of squeezed states.- 2-3 Generation of a single-photon state.- 2-4 Generation of Schrodinger's cat states.- 2-5 Generation of superposition of Fock states.- 2-6 Generation of quantum entanglement.- 3. Quantum operations for quantum states of light.- 3-1 Various quantum operations.- 3-2 Quantum teleportation.- 3-3 Quantum gate teleportation.

Caracteristici

Uses a wave picture for the visualization of all quantum states of light including a single photon Shows that a particle such as a single photon can create a light wave Explains nonclassical states of light such as a Schrödinger’s cat state Includes supplementary material: sn.pub/extras