Spin textures, such as non-uniform domain arrangements, domain walls and skyrmions are naturally occurring structures in magnetic materials. Recently, the unique properties of spin textures such as their reconfigurability, stability and scalability towards nanoscale dimensions, has sparkled the interests towards their use as active elements in spintronic devices. In the framework of magnonics, which aims to use spin waves (SWs) for carrying and processing information, using spin textures allows to harness an extremely rich phenomenology for designing new functionalities. In this review, we focus on the recent developments on the control and stabilization of engineered spin textures, and their applications in the field of magnonics. First, w...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Integrated optically inspired wave-based processing is envisioned to outperform digital architecture...
Spin textures, such as non-uniform domain arrangements, domain walls and skyrmions are naturally occ...
Magnonics represents a promising alternative to conventional electronics for the development of ener...
Magnonics, a research field that uses spin waves, collective excitations of ordered magnetic materia...
Magnonics is envisioned to enable highly efficient data transport and processing, by exploiting prop...
This paper discusses nanomagnetic structures enabling the manipulation of propagating spin waves. We...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Spin waves (and their quanta magnons) can effectively carry and process information in magnetic nano...
Novel material properties can be realized by designing waves ’ dispersion relations in arti-ficial c...
The anticipated end of Moore’s law has accelerated the exploration and development of new approaches...
Magnonics is a branch of physics dealing with spin waves, or their quanta – magnons. Spin waves are ...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Integrated optically inspired wave-based processing is envisioned to outperform digital architecture...
Spin textures, such as non-uniform domain arrangements, domain walls and skyrmions are naturally occ...
Magnonics represents a promising alternative to conventional electronics for the development of ener...
Magnonics, a research field that uses spin waves, collective excitations of ordered magnetic materia...
Magnonics is envisioned to enable highly efficient data transport and processing, by exploiting prop...
This paper discusses nanomagnetic structures enabling the manipulation of propagating spin waves. We...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Spin waves (and their quanta magnons) can effectively carry and process information in magnetic nano...
Novel material properties can be realized by designing waves ’ dispersion relations in arti-ficial c...
The anticipated end of Moore’s law has accelerated the exploration and development of new approaches...
Magnonics is a branch of physics dealing with spin waves, or their quanta – magnons. Spin waves are ...
Magnonics addresses the physical properties of spin waves and utilizes them for data processing. Sca...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Integrated optically inspired wave-based processing is envisioned to outperform digital architecture...