<p>A unique optoelectronic synaptic device has been developed, leveraging the negative photoconductance property of a single-crystal material system called Cs<sub>2</sub>CoCl<sub>4</sub>. This device exhibits a simultaneous volatile resistive switching response and sensitivity to optical stimuli, positioning Cs<sub>2</sub>CoCl<sub>4</sub> as a promising candidate for optically enhanced neuromorphic applications.</p>

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A light-driven device for neuromorphic computing

  • Shimul Kanti Nath

摘要

A unique optoelectronic synaptic device has been developed, leveraging the negative photoconductance property of a single-crystal material system called Cs2CoCl4. This device exhibits a simultaneous volatile resistive switching response and sensitivity to optical stimuli, positioning Cs2CoCl4 as a promising candidate for optically enhanced neuromorphic applications.