Discontinuous electromagnetic fields using orthogonal electric and magnetic currents for wavefront manipulation
Дискретные электромагнитные поля с использованием ортогональных электрических и магнитных токов для управления волновым фронтом
2013-06-10
SCID: 54.1/rrtn6hkd
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Huygens sourcesdiscontinuous electromagnetic fieldselectromagnetic cloakingmetasurfacesorthogonal electric and magnetic currents
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Abstract (AI)
We introduce the idea of discontinuous electric and magnetic fields at a boundary to design and shape wavefronts in an arbitrary manner. To create this discontinuity in the field we use orthogonal electric and magnetic currents which act like Huygens source to radiate the desired wavefront. These currents can be synthesized either by an array of electric and magnetic dipoles or by a combined impedance and admittance surface. A dipole array is an active implementation to impose discontinuous fields while the impedance/admittance surface acts as a passive one. We then expand on our previous work showing how electric and magnetic dipole arrays can be used to cloak an object demonstrating novel cloaking and anti-cloaking schemes. We also show how to arbitrarily refract a beam using a set of impedance and admittance surfaces. Refraction using the idea of discontinuous fields is shown to be a more general case of refraction than using simple phase discontinuities.
Key Findings
1
Discontinuous electric and magnetic fields at a boundary enable arbitrary wavefront design and manipulation.
2
Electric and magnetic dipole arrays enable novel cloaking and anti-cloaking schemes for objects.
3
Impedance and admittance surfaces can arbitrarily refract beams, providing a more general refraction mechanism than simple phase discontinuities.
4
Orthogonal electric and magnetic currents function as Huygens sources for radiating prescribed wavefronts.
5
The required currents can be realized actively with electric and magnetic dipole arrays or passively with combined impedance and admittance surfaces.
Research Object
discontinuous electromagnetic fields at a boundary generated by orthogonal electric and magnetic currents, including dipole arrays and impedance/admittance surfaces
Research Subject
arbitrary wavefront manipulation, including cloaking, anti-cloaking, and generalized beam refraction enabled by discontinuous fields
Publication Details
Publication Date
2013-06-10
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