Abstract Aperiodicity and un-conventional rotational symmetries allow quasicrystalline structures to exhibit unusual physical and functional properties. In magnetism, artificial ferromagnetic quasicrystals exhibited knee anomalies suggesting reprogrammable magnetic properties via non-stochastic switching. However, the decisive roles of short-range exchange and long-range dipolar interactions have not yet been clarified for optimized reconfigurable functionality. We report broadband spin-wave spectroscopy and X-ray photoemission electron microscopy on different quasicrystal lattices consisting of ferromagnetic Ni81Fe19 nanobars arranged on aperiodic Penrose and Ammann tilings with different exchange and dipolar interactions. We imaged the ma...
Artificial frustrated systems offer a playground to study the emergent properties of interacting sys...
Arrays of interacting 2D nanomagnets display unprecedented electromagnetic properties via collective...
We have patterned novel Permalloy thin films with quasicrystalline Penrose P2 tilings and measured t...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Magnonic quasicrystals can be used to manipulate spin waves, offering possibilities beyond those of ...
Unraveling nanoscale spin structures has long been an important activity addressing various scientif...
Quasicrystals are aperiodically ordered structures with unconventional rotational symmetry. Their pe...
We study the spin dynamics in arrays of densely packed submicron Ni80Fe20 wires which form one-dimen...
Quasicrystals lack translational symmetry, but can still exhibit long-range order, promoting them to...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
Quasicrystals have been shown to exhibit physical properties that are dramatically different from th...
We have patterned novel Permalloy thin films with quasicrystalline Penrose P2 tilings and measured t...
We have studied the impact of lattice geometry on the dynamic properties of close-spaced arrays of c...
We have created and studied artificial magnetic quasicrystals based on Penrose tiling patterns of in...
We have studied the impact of lattice geometry on the dynamic properties of close-spaced arrays of c...
Artificial frustrated systems offer a playground to study the emergent properties of interacting sys...
Arrays of interacting 2D nanomagnets display unprecedented electromagnetic properties via collective...
We have patterned novel Permalloy thin films with quasicrystalline Penrose P2 tilings and measured t...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Magnonic quasicrystals can be used to manipulate spin waves, offering possibilities beyond those of ...
Unraveling nanoscale spin structures has long been an important activity addressing various scientif...
Quasicrystals are aperiodically ordered structures with unconventional rotational symmetry. Their pe...
We study the spin dynamics in arrays of densely packed submicron Ni80Fe20 wires which form one-dimen...
Quasicrystals lack translational symmetry, but can still exhibit long-range order, promoting them to...
Artificial spin ices consist of nanomagnets arranged on the sites of various periodic and aperiodic ...
Quasicrystals have been shown to exhibit physical properties that are dramatically different from th...
We have patterned novel Permalloy thin films with quasicrystalline Penrose P2 tilings and measured t...
We have studied the impact of lattice geometry on the dynamic properties of close-spaced arrays of c...
We have created and studied artificial magnetic quasicrystals based on Penrose tiling patterns of in...
We have studied the impact of lattice geometry on the dynamic properties of close-spaced arrays of c...
Artificial frustrated systems offer a playground to study the emergent properties of interacting sys...
Arrays of interacting 2D nanomagnets display unprecedented electromagnetic properties via collective...
We have patterned novel Permalloy thin films with quasicrystalline Penrose P2 tilings and measured t...