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Open AccessJournal ArticleDOI

Polarization squeezing and continuous-variable polarization entanglement

TLDR
In this article, the Stokes-parameter operators and the associated Poincare sphere are defined and their basic properties are reviewed for bright squeezed light, and the main object of the application of these concepts to bright squeezed light is shown that a light beam formed by interference of two orthogonally polarized quadrature-squeezed beams exhibits squeezing in some Stokes parameters.
Abstract
A concept of polarization entanglement for continuous variables is introduced. For this purpose the Stokes-parameter operators and the associated Poincare sphere, which describe the quantum-optical polarization properties of light, are defined and their basic properties are reviewed. The general features of the Stokes operators are illustrated by evaluation of their means and variances for a range of simple polarization states. Some of the examples show polarization squeezing, in which the variances of one or more Stokes parameters are smaller than the coherent-state value. The main object of the paper is the application of these concepts to bright squeezed light. It is shown that a light beam formed by interference of two orthogonally polarized quadrature-squeezed beams exhibits squeezing in some of the Stokes parameters. Passage of such a primary polarization-squeezed beam through suitable optical components generates a pair of polarization-entangled light beams with the nature of a two-mode squeezed state. Implementation of these schemes using the double-fiber Sagnac interferometer provides an efficient method for the generation of bright nonclassical polarization states. The important advantage of these nonclassical polarization states for quantum communication is the possibility of experimentally determining all of the relevant conjugate variables of both squeezed and entangled fields using only linear optical elements followed by direct detection.

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Citations
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Photonic quantum technologies

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The Quantum Theory of Light

TL;DR: In this article, the time dependence of ρ11, ρ22 and ρ12 under steady-state conditions was analyzed under a light field interaction V = -μ12Ee iωt + c.c.
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Colloquium: The Einstein-Podolsky-Rosen paradox: From concepts to applications

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References
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Book

Fundamentals of Photonics

TL;DR: The Fundamentals of Photonics, Third Edition as discussed by the authors is a self-contained and up-to-date introductory-level textbook that thoroughly surveys this rapidly expanding area of engineering and applied physics.
Book

The quantum theory of light

Rodney Loudon
TL;DR: In this paper, the Planck's radiation law and the Einstein coefficients were used to describe the atom-radiation interaction and the quantum mechanics of optical fluctuations and coherence, respectively.

Principles of Optics (7th Ed)

Max Born, +1 more
Journal ArticleDOI

The Quantum Theory of Light

TL;DR: In this article, the time dependence of ρ11, ρ22 and ρ12 under steady-state conditions was analyzed under a light field interaction V = -μ12Ee iωt + c.c.
Book

Methods in Theoretical Quantum Optics

TL;DR: 1. Foundations 2. Coherent interactions 3. Operators and states 4. Quantum statistics of fields 5. Dissipative processes 6. Dressed states.
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