Neuromorphic computing, inspired by the biological nervous system, has attracted enormous attention since it holds the promise of energy-efficient, intelligent, and highly adaptable computing systems [1-3]. Recently, magnetic skyrmions have been considered as promising candidates for neuromorphic computing design owing to their unique dynamic and topological characteristics such as high stability, low driving current density, and compact size in the nanometer range [4-6]. In this work, we report on a micromagnetic simulation study of the dynamics of the skyrmions and their manipulations in confined geometries, attempting to emulate the behaviors of biological synapses and neurons. By exploiting the topological characteristics in current-dri...
Magnetic skyrmion, which is one of the topologically stable magnetic configurations, has been regard...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions are considered a promising candidate for the next-generation information processi...
Artificial neuron is one of the fundamental computing unit in brain-inspired artificial neural netwo...
Magnetic skyrmion technology is promising for the next-generation spintronics-based memory and neuro...
Spintronics nanodevices, which exploit both the magnetic and electrical properties of electrons, hav...
Neuromorphic computing uses basic principles inspired by the brain to design circuits that perform a...
Magnetic skyrmions are topologically stable spin textures that are found in materials with Dzyaloshi...
We report dynamics of skyrmion bubbles driven by spin-transfer torque in achiral ferromagnetic nanos...
The topologically protected magnetic spin configurations known as Skyrmions offer promising applicat...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
International audienceMagnetic skyrmions are promising candidates as elementary nanoscale bits in lo...
Magnetic skyrmions are nanoscopic magnetization textures that have intrigued the spintronics communi...
Department of Materials Science and EngineeringMagnetic skyrmions are topologically stable spin conf...
Artificial intelligence (AI) has the ability of revolutionizing our lives and society in a radical w...
Magnetic skyrmion, which is one of the topologically stable magnetic configurations, has been regard...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions are considered a promising candidate for the next-generation information processi...
Artificial neuron is one of the fundamental computing unit in brain-inspired artificial neural netwo...
Magnetic skyrmion technology is promising for the next-generation spintronics-based memory and neuro...
Spintronics nanodevices, which exploit both the magnetic and electrical properties of electrons, hav...
Neuromorphic computing uses basic principles inspired by the brain to design circuits that perform a...
Magnetic skyrmions are topologically stable spin textures that are found in materials with Dzyaloshi...
We report dynamics of skyrmion bubbles driven by spin-transfer torque in achiral ferromagnetic nanos...
The topologically protected magnetic spin configurations known as Skyrmions offer promising applicat...
The discovery of magnetic skyrmions provides a promising pathway for developing functional spintroni...
International audienceMagnetic skyrmions are promising candidates as elementary nanoscale bits in lo...
Magnetic skyrmions are nanoscopic magnetization textures that have intrigued the spintronics communi...
Department of Materials Science and EngineeringMagnetic skyrmions are topologically stable spin conf...
Artificial intelligence (AI) has the ability of revolutionizing our lives and society in a radical w...
Magnetic skyrmion, which is one of the topologically stable magnetic configurations, has been regard...
Magnetic storage based on racetrack memory is very promising for the design of ultra-dense, low-cost...
Magnetic skyrmions are considered a promising candidate for the next-generation information processi...