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The magnetic and electric transverse spin density of spatially confined light

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arxiv 1711.10268 v1 pith:22GTM5TZ submitted 2017-11-28 physics.optics

The magnetic and electric transverse spin density of spatially confined light

classification physics.optics
keywords spinelectricmagnetictransversedensityfieldlightbeam
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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When a beam of light is laterally confined, its field distribution can exhibit points where the local magnetic and electric field vectors spin in a plane containing the propagation direction of the electromagnetic wave. The phenomenon indicates the presence of a non-zero transverse spin density. Here, we experimentally investigate this transverse spin density of both magnetic and electric fields, occurring in highly-confined structured fields of light. Our scheme relies on the utilization of a high-refractive-index nano-particle as local field probe, exhibiting magnetic and electric dipole resonances in the visible spectral range. Because of the directional emission of dipole moments which spin around an axis parallel to a nearby dielectric interface, such a probe particle is capable of locally sensing the magnetic and electric transverse spin density of a tightly focused beam impinging under normal incidence with respect to said interface. We exploit the achieved experimental results to emphasize the difference between magnetic and electric transverse spin densities.

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