paper

Physical Bounds to the Entropy-Depolarization Relation in Random Light Scattering

arXiv:quant-ph/0407234 · doi:10.1103/PhysRevLett.94.090406

Abstract

We present a theoretical study of multi-mode scattering of light by optically random media, using the Mueller-Stokes formalism which permits to encode all the polarization properties of the scattering medium in a real matrix. From this matrix two relevant parameters can be extracted: the depolarizing power and the polarization entropy of the scattering medium. By studying the relation between and , we find that {\em all} scattering media must satisfy some {\em universal} constraints. These constraints apply to both classical and quantum scattering processes. The results obtained here may be especially relevant for quantum communication applications, where depolarization is synonymous with decoherence.

4 pages, 2 figures

Physical Bounds to the Entropy-Depolarization Relation in Random Light Scattering · wovepaper