Title :
Information Geometrical Analysis of Additivity of Optical Quantum Channels
Author :
Gyongyosi, Laszlo ; Imre, Sandor
Author_Institution :
Univ. of Technol., Budapest, Hungary
fDate :
1/1/2011 12:00:00 AM
Abstract :
The additivity property of quantum channels is still an open question and an exciting subject of current research. There are some nonunital channels for which strict additivity is known, although the general rule for nonunital quantum channels is still not proven. We analyze the additivity of the amplitude damping channel, which is an important channel in physical implementations and optical communications. The effect of amplitude damping has great importance in optical communications, since this channel model describes energy dissipation. We show an efficient information computational geometric method to analyze the additivity property of the amplitude damping quantum channel, using quantum Delaunay tessellation on the Bloch ball and quantum relative entropy as a distance measure.
Keywords :
geometry; optical communication; quantum communication; Bloch ball; additivity; amplitude damping quantum channel; channel model; distance measure; energy dissipation; information computational geometric method; information geometrical analysis; nonunital quantum channel; optical communication; optical quantum channel; quantum Delaunay tessellation; quantum relative entropy; Channel capacity; Optical channels; Quantum channel; Quantum communication;
Journal_Title :
Optical Communications and Networking, IEEE/OSA Journal of
DOI :
10.1364/JOCN.3.000048