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Mimicking Chiral Light-Matter Interaction

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arxiv 1904.01910 v1 pith:VALX5AXC submitted 2019-04-03 physics.optics

Mimicking Chiral Light-Matter Interaction

classification physics.optics
keywords chirallight-matterpolarizationaxisbeamcirculardemonstrateeffect
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We demonstrate that electric-dipole scatterers can mimic chiral light-matter interaction by generating far-field circular polarization upon scattering, even though the optical chirality of the incident field as well as that of the scattered light is zero. The presented effect originates from the fact that electric-dipole scatterers respond selectively only to the incident electric field, which eventually results in depolarization of the transmitted beam and in generation of far-field circular polarization. To experimentally demonstrate this effect we utilize a cylindrical vector beam with spiral polarization and a spherical gold nanoparticle positioned on the optical axis -- the axis of rotational symmetry of the system. Our experiment and a simple theoretical model address the fundamentals of duality symmetry in optics and chiral light-matter interactions, accentuating their richness and ubiquity yet in highly symmetric configurations.

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