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Two photons co- and counter-propagating through $N$ cross-Kerr sites

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arxiv 1604.03914 v3 pith:NAGK33MT submitted 2016-04-13 quant-ph physics.optics

classification quant-phphysics.optics
keywords cross-kerrinteractionphotonscasescontrolled-phasemediummodess-matrix
verification ladder T0 review T1 audit T2 compute T3 formal
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A cross-Kerr interaction produces a phase shift on two modes of light proportional to the number of photons in both modes, and is sometimes called cross-phase modulation. Cross-Kerr nonlinearities have many applications in classical and quantum nonlinear optics, including the possibility of a deterministic and all-optical controlled-phase gate. We calculate the one- and two-photon S-matrix for fields propagating in a medium where the cross-Kerr interaction is spatially distributed at discrete interaction sites comprised of atoms. For the interactions considered, we analyze the cases where the photons co-propagate and counter-propagate through the medium and give a physical interpretation to the differences between the two cases. Finally, we obtain the S-matrix in the limit of infinitely long chains, showing that it corresponds to a perfect controlled-phase operation.

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