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Superconducting Optoelectronic Neurons II: Receiver Circuits

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arxiv 1805.02599 v3 pith:WT4C53R6 submitted 2018-05-07 q-bio.NC cs.ETcs.NE

classification q-bio.NCcs.ETcs.NE
keywords synapticcircuitsconnectionsintegrationneuronssuperconductingeventsloop
verification ladder T0 review T1 audit T2 compute T3 formal
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Circuits using superconducting single-photon detectors and Josephson junctions to perform signal reception, synaptic weighting, and integration are investigated. The circuits convert photon-detection events into flux quanta, the number of which is determined by the synaptic weight. The current from many synaptic connections is inductively coupled to a superconducting loop that implements the neuronal threshold operation. Designs are presented for synapses and neurons that perform integration as well as detect coincidence events for temporal coding. Both excitatory and inhibitory connections are demonstrated. It is shown that a neuron with a single integration loop can receive input from 1000 such synaptic connections, and neurons of similar design could employ many loops for dendritic processing.

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