We have experimentally and numerically studied the directional birefringence of X-band microwaves by magnetochiral (MCh) effects of a single metamolecule under dc magnetic fields at room temperature. Phase and amplitude transmission coefficients from top and bottom, i.e., S parameters of S21 and S12 , are measured for the single metamolecule consisting of a copper chiral structure and ferrite cylinder in a waveguide. By applying a dc magnetic field, we observe a difference between S21 and S12, which is an emergence of the MCh effects with simultaneous space-inversion and time-reversal symmetry breaking. Numerical calculation based on a finite element method reproduces well the experimental results of the MCh effects. The MCh effect can b...
Spontaneous chiral symmetry breaking underpins a variety of areas such as subatomic physics and bioc...
We experimentally observe the tuning of metamaterials through the relative rotation of the elements ...
Photonic crystals become fashionable object of investigation on microwaves and the interest is cause...
We report direct observation of magnetochiral (MCh) effects for the X-band microwaves through a sing...
This review introduces and overviews electromagnetism in structured metamaterials which undergo simu...
We investigate the ferromagnetic resonance (FMR) of a single chiral structure of a ferromagnetic met...
We discuss the effects caused by a resonant cavity around a sample of a magnetic molecular crystal (...
Abstract: The microwave properties of magnetic metallic nanostructures with a giant magnetoresistive...
The interplay between chirality and magnetic fields gives rise to a cross effect referred to as magn...
We studied the highly symmetric magnetic components of a metamaterial with negative permeability in ...
International audienceThe interplay between chirality and magnetic fields gives rise to a cross effe...
Abstract: Studies of the interaction of electromagnetic microwaves with [Co88Fe12/Cu]n nanostructure...
We have undertaken a comprehensive program directed at developing and perfecting a novel class of mi...
We demonstrate a detection method for microwave spectroscopy on magnetization reversal dynamics of n...
In this work, we carried out systematic experimental and theoretical investigations of ferromagnetic...
Spontaneous chiral symmetry breaking underpins a variety of areas such as subatomic physics and bioc...
We experimentally observe the tuning of metamaterials through the relative rotation of the elements ...
Photonic crystals become fashionable object of investigation on microwaves and the interest is cause...
We report direct observation of magnetochiral (MCh) effects for the X-band microwaves through a sing...
This review introduces and overviews electromagnetism in structured metamaterials which undergo simu...
We investigate the ferromagnetic resonance (FMR) of a single chiral structure of a ferromagnetic met...
We discuss the effects caused by a resonant cavity around a sample of a magnetic molecular crystal (...
Abstract: The microwave properties of magnetic metallic nanostructures with a giant magnetoresistive...
The interplay between chirality and magnetic fields gives rise to a cross effect referred to as magn...
We studied the highly symmetric magnetic components of a metamaterial with negative permeability in ...
International audienceThe interplay between chirality and magnetic fields gives rise to a cross effe...
Abstract: Studies of the interaction of electromagnetic microwaves with [Co88Fe12/Cu]n nanostructure...
We have undertaken a comprehensive program directed at developing and perfecting a novel class of mi...
We demonstrate a detection method for microwave spectroscopy on magnetization reversal dynamics of n...
In this work, we carried out systematic experimental and theoretical investigations of ferromagnetic...
Spontaneous chiral symmetry breaking underpins a variety of areas such as subatomic physics and bioc...
We experimentally observe the tuning of metamaterials through the relative rotation of the elements ...
Photonic crystals become fashionable object of investigation on microwaves and the interest is cause...