Squeezed state evolution and entanglement in lossy coupled resonator optical waveguides

10/23/2017
by   Hossein Seifoory, et al.
0

We investigate theoretically the temporal evolution of a squeezed state in lossy coupled-cavity systems. We present a general formalism based upon the tight binding approximation and apply this to a two-cavity system as well as to a coupled resonator optical waveguide in a photonic crystal. We derive analytical expressions for the number of photons and the quadrature noise in each cavity as a function of time when the initial excited state is a squeezed state in one of the cavities. We also analytically evaluate the time dependant cross correlation between the photons in different cavities to evaluate the degree of quantum entanglement. We demonstrate the effects of loss on the properties of the coupled-cavity systems and derive approximate analytic expressions for the maximum photon number, maximum squeezing and maximum entanglement for cavities far from the initially excited cavity in a lossless coupled resonator optical waveguide.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
09/10/2023

Machine Learning for maximizing the memristivity of single and coupled quantum memristors

We propose machine learning (ML) methods to characterize the memristive ...
research
04/02/2020

Layer entanglement in multiplex, temporal multiplex, and coupled multilayer networks

Complex networks, such as transportation networks, social networks, or b...
research
07/11/2023

Entanglement Distribution in the Quantum Internet: Knowing when to Stop!

Entanglement distribution is a key functionality of the Quantum Internet...
research
05/12/2022

Analytic solutions and numerical method for a coupled thermo-neutronic problem

We consider in this contribution a simplified idealized one-dimensional ...
research
05/30/2018

Quantum correlations and entanglement in a Kitaev-type spin chain

The entanglement and quantum correlation measures have been investigated...
research
10/04/2018

Ergodic Capacity of Triple-Hop All-Optical Amplify-and-Forward Relaying over Free-Space Optical Channels

In this paper, we propose a comprehensive research over triple hop all-o...
research
06/27/2019

Recovering the distribution of fluorophore for FDOT using cuboid approximation

The time-domain fluorescence diffuse optical tomography (FDOT) is theore...

Please sign up or login with your details

Forgot password? Click here to reset