The spin-wave band structure of a two-dimensional square array of NiFe circular antidots (hole diameter 120 nm, periodicity 800 nm) is investigated. Brillouin light scattering experiments and band structure calculations, carried out by means of the dynamical matrix method, provide evidence for either extended or localized magnonic modes. Both families exhibit band gaps at Brillouin zone boundaries, attributed to Bragg reflection. Their calculated magnitude agrees with the one obtained by using an analytical model that takes into account the periodic variation of the internal field. This is in contrast to antidots in photonics and electronics, where the back-reflection is directly caused by the presence of holes. The results are important fo...
The size effects on frequencies of collective modes in two-dimensional (2D) arrays of periodic circu...
We report spin wave excitations in a nanopatterned antidot lattice fabricated from a 30-nm thick Ni8...
The behavior of collective spin excitations in chains of rectangular NiFe dots is studied as a funct...
The spin-wave band structure of a two-dimensional square array of NiFe circular antidots (hole diame...
The spin wave band structure of a two-dimensional square array of NiFe circular antidots having diam...
The spin wave band structure of a two-dimensional square array of NiFe circular antidots having dia...
The spin wave band structure of a two-dimensional square array of NiFe circular antidots (ADs) has b...
The Brillouin light scattering technique has been exploited to study the angle-resolved spin wave b...
We present the observation of a complete bandgap and collective spin wave excita-tion in two-dimensi...
Two-dimensional arrays of interacting magnetic elements have recently received increased interest in...
Magnonic Crystals (MCs) represent a new class of metamaterials with periodically modulated magnetic ...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
The metamaterial properties of two-dimensional magnonic crystals (MCs) are studied according to micr...
We present the possibility of tuning the spin-wave band structure, particularly the bandgaps in a na...
The size effects on frequencies of collective modes in two-dimensional (2D) arrays of periodic circu...
We report spin wave excitations in a nanopatterned antidot lattice fabricated from a 30-nm thick Ni8...
The behavior of collective spin excitations in chains of rectangular NiFe dots is studied as a funct...
The spin-wave band structure of a two-dimensional square array of NiFe circular antidots (hole diame...
The spin wave band structure of a two-dimensional square array of NiFe circular antidots having diam...
The spin wave band structure of a two-dimensional square array of NiFe circular antidots having dia...
The spin wave band structure of a two-dimensional square array of NiFe circular antidots (ADs) has b...
The Brillouin light scattering technique has been exploited to study the angle-resolved spin wave b...
We present the observation of a complete bandgap and collective spin wave excita-tion in two-dimensi...
Two-dimensional arrays of interacting magnetic elements have recently received increased interest in...
Magnonic Crystals (MCs) represent a new class of metamaterials with periodically modulated magnetic ...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
The spectrum of spin wave excitations on a nanometric two-dimensional periodical array of circular h...
The metamaterial properties of two-dimensional magnonic crystals (MCs) are studied according to micr...
We present the possibility of tuning the spin-wave band structure, particularly the bandgaps in a na...
The size effects on frequencies of collective modes in two-dimensional (2D) arrays of periodic circu...
We report spin wave excitations in a nanopatterned antidot lattice fabricated from a 30-nm thick Ni8...
The behavior of collective spin excitations in chains of rectangular NiFe dots is studied as a funct...