Light Propagation with Phase Discontinuities: Generalized Laws of Reflection and Refraction

Распространение света с фазовыми разрывами: обобщённые законы отражения и преломления
Jean‐Philippe Tetienne, Federico Capasso, Patrice Genevet, Mikhail A. Kats, Zhiyuan Fan, Francesco Aieta, Z. Gaburro, Nanfang Yu
2011-09-01

anomalous reflection and refractiongeneralized laws of reflection and refractionoptical vortices via planar metallic interfacesphase discontinuitiestwo-dimensional array of optical resonators
Conventional optical components rely on gradual phase shifts accumulated during light propagation to shape light beams. New degrees of freedom are attained by introducing abrupt phase changes over the scale of the wavelength. A two-dimensional array of optical resonators with spatially varying phase response and subwavelength separation can imprint such phase discontinuities on propagating light as it traverses the interface between two media. Anomalous reflection and refraction phenomena are observed in this regime in optically thin arrays of metallic antennas on silicon with a linear phase variation along the interface, which are in excellent agreement with generalized laws derived from Fermat's principle. Phase discontinuities provide great flexibility in the design of light beams, as illustrated by the generation of optical vortices through use of planar designer metallic interfaces.
1
A two-dimensional, subwavelength-spaced array of optical resonators with spatially varying phase response can imprint phase discontinuities on light crossing an interface between two media.
2
Introducing abrupt phase changes at the wavelength scale (phase discontinuities) provides new degrees of freedom for shaping light beyond gradual propagation phase shifts.
3
Optically thin arrays of metallic antennas on silicon with a linear phase variation along the interface produce anomalous reflection and refraction consistent with generalized laws derived from Fermat's principle.
4
Phase discontinuities enable flexible beam design demonstrated by generating optical vortices using planar metallic interfaces.

Two-dimensional arrays of optical resonators / planar metallic antenna interfaces that impose phase discontinuities on light at media interfaces

Anomalous reflection and refraction (generalized laws) and beam-shaping effects produced by abrupt subwavelength phase discontinuities, including generation of optical vortices

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2011-09-01
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Authors
Jean‐Philippe Tetienne
Federico Capasso
Patrice Genevet
Mikhail A. Kats
Zhiyuan Fan
Francesco Aieta
Z. Gaburro
Nanfang Yu
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