Spontaneous chiral symmetry breaking underpins a variety of areas such as subatomic physics and biochemistry, and leads to an impressive range of fundamental phenomena. Here we show that this prominent effect is now available in artificial electromagnetic systems, enabled by the advent of magnetoelastic metamaterials where a mechanical degree of freedom leads to a rich variety of strong nonlinear effects such as bistability and self-oscillations. We report spontaneous symmetry breaking in torsional chiral magnetoelastic structures where two or more meta-molecules with opposite handedness are electromagnetically coupled, modifying the system stability. Importantly, we show that chiral symmetry breaking can be found in the stationary response...
Spin-phonon coupling enables the mutual manipulation of phonon and spin degrees of freedom in solids...
We demonstrate a type of meta-atom for creating metamaterials with giant nonlinear optical activity ...
Chiral metamaterials represent a special type of artificial structures that cannot be superposed to ...
Spontaneous chiral symmetry breaking underpins a variety of areas such as subatomic physics and bioc...
We study the nonlinear dynamics of torsional meta-molecules - sub-wavelength resonators with strong ...
This review introduces and overviews electromagnetism in structured metamaterials which undergo simu...
The advent and rapid development of metamaterials introduced many revolutionary concepts for manipu...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim This is an overview of the recent achievements in ...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
A. C. and C. R. thank the U.S. Army International Technology Center Atlantic for financial support (...
Circularly polarized light is incident on a nanostructured chiral meta-surface. In the nanostructure...
Spin-phonon coupling enables the mutual manipulation of phonon and spin degrees of freedom in solids...
We demonstrate a type of meta-atom for creating metamaterials with giant nonlinear optical activity ...
Chiral metamaterials represent a special type of artificial structures that cannot be superposed to ...
Spontaneous chiral symmetry breaking underpins a variety of areas such as subatomic physics and bioc...
We study the nonlinear dynamics of torsional meta-molecules - sub-wavelength resonators with strong ...
This review introduces and overviews electromagnetism in structured metamaterials which undergo simu...
The advent and rapid development of metamaterials introduced many revolutionary concepts for manipu...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim This is an overview of the recent achievements in ...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
The polarization of light can be rotated in materials with an absence of molecular or structural mir...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
Recent studies have demonstrated that it is possible to modify the properties of metamaterials by el...
A. C. and C. R. thank the U.S. Army International Technology Center Atlantic for financial support (...
Circularly polarized light is incident on a nanostructured chiral meta-surface. In the nanostructure...
Spin-phonon coupling enables the mutual manipulation of phonon and spin degrees of freedom in solids...
We demonstrate a type of meta-atom for creating metamaterials with giant nonlinear optical activity ...
Chiral metamaterials represent a special type of artificial structures that cannot be superposed to ...