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Evidence of In-Memory Computing in a Ferrofluid

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arxiv 2211.08152 v1 pith:NWHJ3PY4 submitted 2022-11-15 cs.ET cond-mat.dis-nncond-mat.othernlin.AOphysics.app-ph

classification cs.ETcond-mat.dis-nncond-mat.othernlin.AOphysics.app-ph
keywords computingevidenceferrofluidin-memoryincludingadvancementsanalogapplications
verification ladder T0 review T1 audit T2 compute T3 formal

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Magnetic fluids are excellent candidates for important research fields including energy harvesting, biomedical applications, soft robotics and exploration. However, notwithstanding relevant advancements such as shape reconfigurability, that have been demonstrated, there is no evidence for their computation capability, including the emulation of synaptic functions. Here, we experimentally demonstrate that a Fe3O4 water-based Ferrofluid (FF) can perform electrical analog computing and be programmed using quasi DC signals and read at Radio Frequency (RF) mode. We have observed features in all respects attributable to a memristive behavior, featuring both short and long-term information storage capacity and plasticity. The colloid was capable of classifying digits of a 8x8 pixel dataset using a custom in-memory signal processing scheme, and through Physical Reservoir Computing (PRC) by training a readout layer.

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