Javascript must be enabled to continue!
Magnet-free nonreciprocal metasurface for on-demand bi-directional phase modulation
View through CrossRef
Abstract
Unconstrained by Lorentz reciprocity, nonreciprocal metasurfaces are uniquely capable of encoding distinctive optical functions on forward- and backward-propagating waves. The nonreciprocal metasurfaces reported to date require external electric or magnetic field biasing or rely on nonlinear effects, both of which are challenging to practically implement. Here, we propose and experimentally realize a magnet-free, linear, and passive nonreciprocal metasurface based on self-biased magnetic meta-atoms. Record transmittance up to 77% and operation angle reaching ±64˚ are experimentally demonstrated. Moreover, on-demand bidirectional phase modulation in a “LEGO-like” manner is theoretically proposed and experimentally demonstrated, enabling a cohort of nonreciprocal functionalities such as microwave isolation, nonreciprocal beam steering, nonreciprocal focusing, and nonreciprocal holography. The design can also be extended to MHz and optical frequencies, taking advantage of the wide variety of self-biased gyrotropic materials available. We foresee that the nonreciprocal metasurfaces demonstrated in this work will have a significant practical impact for applications ranging from nonreciprocal antennas and radomes to full-duplex wireless communication and radar systems.
Springer Science and Business Media LLC
Title: Magnet-free nonreciprocal metasurface for on-demand bi-directional phase modulation
Description:
Abstract
Unconstrained by Lorentz reciprocity, nonreciprocal metasurfaces are uniquely capable of encoding distinctive optical functions on forward- and backward-propagating waves.
The nonreciprocal metasurfaces reported to date require external electric or magnetic field biasing or rely on nonlinear effects, both of which are challenging to practically implement.
Here, we propose and experimentally realize a magnet-free, linear, and passive nonreciprocal metasurface based on self-biased magnetic meta-atoms.
Record transmittance up to 77% and operation angle reaching ±64˚ are experimentally demonstrated.
Moreover, on-demand bidirectional phase modulation in a “LEGO-like” manner is theoretically proposed and experimentally demonstrated, enabling a cohort of nonreciprocal functionalities such as microwave isolation, nonreciprocal beam steering, nonreciprocal focusing, and nonreciprocal holography.
The design can also be extended to MHz and optical frequencies, taking advantage of the wide variety of self-biased gyrotropic materials available.
We foresee that the nonreciprocal metasurfaces demonstrated in this work will have a significant practical impact for applications ranging from nonreciprocal antennas and radomes to full-duplex wireless communication and radar systems.
Related Results
Utra-thin single-layered high-efficiency focusing metasurface lens
Utra-thin single-layered high-efficiency focusing metasurface lens
For potential applications of metasurfaces in lens technologies, we propose a cross circularly polarized focusing metasurface which is capable of transforming a circularly polarize...
Full-duplex Reflective Beamsteering Metasurface Featuring Magnetless Nonreciprocal Amplification
Full-duplex Reflective Beamsteering Metasurface Featuring Magnetless Nonreciprocal Amplification
Abstract
Nonreciprocal radiation refers to electromagnetic wave radiation in which a structure provides different response under the change of the direction of the incident...
Fractal metasurface for THz applications with polarization and incidence angle insensitivity
Fractal metasurface for THz applications with polarization and incidence angle insensitivity
Abstract
A Fractal metasurface-based absorber is designed to obtain a
wideband absorption in THz frequency band. The developed absorber
has a broadband absorptio...
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
EnvironmentalSurveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) This comprehensive protocol suite enables systematic environmental surveillance for avian influenza...
Enhanced nonreciprocal radiation in Weyl semimetals by attenuated total reflection
Enhanced nonreciprocal radiation in Weyl semimetals by attenuated total reflection
Recent studies have suggested that Weyl semimetals were the promising materials to verify Kirchhoff’s law for nonreciprocal materials in experiment. Nevertheless, existing designs ...
Effect of proton irradiation on microstructure evolution of permanent magnet
Effect of proton irradiation on microstructure evolution of permanent magnet
Nd2Fe14B rare earth and Sm2Co17 type permanent magnets have been widely used in the third generation of synchronous radiation light source and free electron laser facility in undul...
Nonreciprocal elasticity and the realization of static and dynamic nonreciprocity
Nonreciprocal elasticity and the realization of static and dynamic nonreciprocity
AbstractThe realization of the mechanical nonreciprocity requires breaking either the time-reversal symmetry or the material deformation symmetry. The time-reversal asymmetry was t...
Directional transport of non-reciprocal coupled Brownian particles
Directional transport of non-reciprocal coupled Brownian particles
<sec>In recent years, the physics of systems with non-reciprocal interactions has received increasing attention. Systems with non-reciprocal interactions are existent in soft...

