Reconfigurable Training and Reservoir Computing in an Artificial Spin-Vortex Ice via Spin-Wave Fingerprinting
arXiv:2107.08941 · doi:10.1038/s41565-022-01091-7
Abstract
Strongly-interacting artificial spin systems are moving beyond mimicking naturally-occurring materials to emerge as versatile functional platforms, from reconfigurable magnonics to neuromorphic computing. Typically artificial spin systems comprise nanomagnets with a single magnetisation texture: collinear macrospins or chiral vortices. By tuning nanoarray dimensions we achieve macrospin/vortex bistability and demonstrate a four-state metamaterial spin-system 'Artificial Spin-Vortex Ice' (ASVI). ASVI can host Ising-like macrospins with strong ice-like vertex interactions, and weakly-coupled vortices with low stray dipolar-field. Vortices and macrospins exhibit starkly-differing spin-wave spectra with analogue-style mode-amplitude control and mode-frequency shifts of df = 3.8 GHz. The enhanced bi-textural microstate space gives rise to emergent physical memory phenomena, with ratchet-like vortex training and history-dependent nonlinear fading memory when driven through global field cycles. We employ spin-wave microstate fingerprinting for rapid, scaleable readout of vortex and macrospin populations and leverage this for spin-wave reservoir computation. ASVI performs linear and non-linear mapping transformations of diverse input signals as well as chaotic time-series forecasting. Energy costs of machine learning are spiralling unsustainably, developing low-energy neuromorphic computation hardware such as ASVI is crucial to achieving a zero-carbon computational future.
References in corpus (13)
- Artificial "spin ice" in a geometrically frustrated lattice of nanoscale ferromagnetic islands
- Roadmap on Spin-Wave Computing
- Physical reservoir computing -- An introductory perspective
- Magnetic texture based magnonics
- Nanoscale neural network using non-linear spin-wave interference
- Ground state lost but degeneracy found: the effective thermodynamics of artificial spin ice
- Reconfigurable magnonic mode-hybridisation and spectral control in a bicomponent artificial spin ice
- Emergent spin dynamics enabled by lattice interactions in a bicomponent artificial spin ice
- Selective and Fast Plasmon-Assisted Photo-Heating of Nanomagnets; A New Route for Opto-Activated Nanomagnetic Logic and Artificial Spin Systems
- Comparison of Spin-Wave Modes in Connected and Disconnected Artificial Spin Ice Nanostructures Using Brillouin Light Scattering Spectroscopy
- Thermoplasmonic Nanomagnetic Logic Gates
- Dynamic dependence to domain wall propagation through artificial spin ice
- Observation and control of collective spin-wave mode-hybridisation in chevron arrays and square, staircase and brickwork artificial spin ices
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- Toroidic phase transitions in a direct-kagome artificial spin ice
- Artificial Spin Ice: A Tutorial on Design and Control of Geometry, Microstate, Magnon Dynamics & Neuromorphic Computing
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- From Vertices to Vortices in magnetic nanoislands
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- Spintronic Physical Reservoir for Autonomous Prediction and Long-Term Household Energy Load Forecasting
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- Deconstructing Magnetization Noise: Degeneracies, Phases, and Mobile Fractionalized Excitations in Tetris Artificial Spin Ice
- Ferromagnetic resonance in 3D-tilted square artificial spin ices
- Observation and Control of Chiral Spin Frustration in BiYIG Thin Films
- Snakes in the Plane: Controllable Gliders in a Nanomagnetic Metamaterial
- Relaxation pathways and emergence of domains in square artificial spin ice
- Harnessing Interlayer Magnetic Coupling for Efficient, Field-Free Current-Induced Magnetization Switching in a Magnetic Insulator
- Modelling nanomagnet vertex dynamics through Coulomb charges
- Stray magnetic fields from elliptical-shaped and stadium-shaped ferromagnets
- Coupling-dependent antiferromagnetic-ferromagnetic ordering in a pinwheel artificial spin ice
- Echo state property and memory capacity of artificial spin ice
- Spin wave resonance in yttrium iron garnet stripe domains
- Predicting the future with magnons
- Co-existing magnetization reversal mechanisms in shakti spin ice systems
- Magnetic texture control in ion-implanted metamaterials
- Perpendicular-anisotropy artificial spin ice with spontaneous ordering: a platform for neuromorphic computing with flexible timescales
- Ultrafast Laser-Induced Magnetic Relaxation in Artificial Spin Ice Driven by Dipolar Interactions
- Complex field reversal dynamics in nanomagnetic systems
- Metrics for spin-based computing
- The dipolar Aleppo lattice: Ground state ordering and ergodic dynamics in the absence of vertex frustration
- Unveiling Micrometer-Range Spin-Wave Transport in Artificial Spin Ice
- Realizing Blume-Capel Degrees of Freedom with Toroidal Moments in a Ruby Artificial Spin Ice
- Long-Range Magnetic Order in Structurally Embedded Mesospin Metamaterials