Novel material properties can be realized by designing waves ’ dispersion relations in arti-ficial crystals. The crystal’s structural length scales may range from nano- (light) up to centimeters (sound waves). Because of their emergent properties these materials are called metamaterials. Different to photonics, where the dielectric constant dominantly determines the index of refraction, in a ferromagnet the spin-wave index of refraction can be dramatically changed already by the magnetization direction. This allows a different flexibility in realiz-ing dynamic wave guides or spin-wave switches. The present review will give an introduction into the novel functionalities of spin-wave devices, concepts for spin-wave based computing and magnoni...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
The anticipated end of Moore’s law has accelerated the exploration and development of new approaches...
This paper discusses nanomagnetic structures enabling the manipulation of propagating spin waves. We...
Spin waves (and their quanta magnons) can effectively carry and process information in magnetic nano...
We present the observation of a complete bandgap and collective spin wave excita-tion in two-dimensi...
We present the possibility of tuning the spin-wave band structure, particularly the bandgaps in a na...
A large proportion of the recent growth of the volume of electromagnetics research has been associat...
We present the results obtained by means of two different methods of calculation of spin-wave mode d...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
In this Report, we address fundamental issues associated with a novel magnonic approach for infor-ma...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
The anticipated end of Moore’s law has accelerated the exploration and development of new approaches...
This paper discusses nanomagnetic structures enabling the manipulation of propagating spin waves. We...
Spin waves (and their quanta magnons) can effectively carry and process information in magnetic nano...
We present the observation of a complete bandgap and collective spin wave excita-tion in two-dimensi...
We present the possibility of tuning the spin-wave band structure, particularly the bandgaps in a na...
A large proportion of the recent growth of the volume of electromagnetics research has been associat...
We present the results obtained by means of two different methods of calculation of spin-wave mode d...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
In this Report, we address fundamental issues associated with a novel magnonic approach for infor-ma...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
The anticipated end of Moore’s law has accelerated the exploration and development of new approaches...