Transport and quantum walk of nonclassical light in coupled waveguides

Rai, Amit ; Agarwal, G. S. ; Perk, J. H. H. (2008) Transport and quantum walk of nonclassical light in coupled waveguides Physical Review A, 78 (4). 042304_1-042304_5. ISSN 1050-2947

[img]
Preview
PDF - Publisher Version
260kB

Official URL: http://pra.aps.org/abstract/PRA/v78/i4/e042304

Related URL: http://dx.doi.org/10.1103/PhysRevA.78.042304

Abstract

We study the transport and quantum walk of nonclassical light in an array of coupled waveguides which have properties like very low decoherence and thus making them ideal for storage of quantum information. We show how squeezing gets turned over from one waveguide to another. We further show how input nonclassical light can generate entanglement among different waveguides. Our results, which are valid for an arbitrary number of waveguides, involve both first quantization due to array structure and second quantization due to the quantum nature of fields and can also be used to discuss the Talbot effect in the quantum regime.

Item Type:Article
Source:Copyright of this article belongs to American Physical Society.
ID Code:11868
Deposited On:13 Nov 2010 13:44
Last Modified:16 May 2016 21:16

Repository Staff Only: item control page