Enhanced up-conversion of entangled photons and quantum interference under localized field in nanostructures
arXiv:1211.5195 · doi:10.1103/PhysRevLett.112.133601
Abstract
We theoretically investigate up-conversion process of entangled two photons on a dimer molecule, which is coupled by a cavity or nanoscale metallic structure. Within one-dimensional input-output theory, the propagators of the photons are derived analytically and the up-conversion probability is calculated numerically. It is shown that the coupling with the nanostructure clearly enhances the process. We also find that the enhancement becomes further pronounced for some balanced system parameters such as the quantum correlation between photons, radiation decay rates and coupling between the nanostructure and molecule. The non-monotonic dependencies are reasonably explained in view of quantum interference between the coupled modes of the whole system. This result can provide a guideline for nonlinear optical reactions by weak light of a few photons.
13 pages, 3 figures
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- Design of nonlinear optical response of multipole-type excitons by film thickness and incident pulse width
- Proposal of highly efficient photoemitter with strong photon-harvesting capability and exciton superradiance
- Two-photon up-conversion affected by inter-molecule correlations near metallic nanostructure