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Planar immersion lens with metasurfaces

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arxiv 1503.03825 v1 pith:5SQG2ED6 submitted 2015-03-12 physics.optics

classification physics.optics
keywords lensmaterialplanarimmersionmetasurfacesfocusfree-spacelight
verification ladder T0 review T1 audit T2 compute T3 formal
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The solid immersion lens is a powerful optical tool that allows light entering material from air or vacuum to focus to a spot much smaller than the free-space wavelength. Conventionally, however, they rely on semispherical topographies and are non-planar and bulky, which limits their integration in many applications. Recently, there has been considerable interest in using planar structures, referred to as metasurfaces, to construct flat optical components for manipulating light in unusual ways. Here, we propose and demonstrate the concept of a planar immersion lens based on metasurfaces. The resulting planar device, when placed near an interface between air and dielectric material, can focus electromagnetic radiation incident from air to a spot in material smaller than the free-space wavelength. As an experimental demonstration, we fabricate an ultrathin and flexible microwave lens and further show that it achieves wireless energy transfer in material mimicking biological tissue.

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