0305072v1

related topics
{temperature, thermal, energy}
{time, systems, information}
{theory, mechanics, state}
{qubit, qubits, gate}
{measurement, state, measurements}
{wave, scattering, interference}
{state, phys, rev}
{time, decoherence, evolution}
{equation, function, exp}
{algorithm, log, probability}
{spin, pulse, spins}
{phase, path, phys}
{error, code, errors}
{light, field, probe}
{group, space, representation}
{states, state, optimal}
{key, protocol, security}

A neural-network-like quantum information processing system

Mitja Perus, Horst Bischof

abstract: The Hopfield neural networks and the holographic neural networks are models which were successfully simulated on conventional computers. Starting with these models, an analogous fundamental quantum information processing system is developed in this article. Neuro-quantum interaction can regulate the "collapse"-readout of quantum computation results. This paper is a comprehensive introduction into associative processing and memory-storage in quantum-physical framework.

oai_identifier:
oai:arXiv.org:quant-ph/0305072
categories:
quant-ph
comments:
9 pages, an introductory summary of essentials
arxiv_id:
quant-ph/0305072
created:
2003-05-13

Full article ▸

related documents
0507262v1
0105089v1
0101140v1
9711072v1
0506191v1
0101006v1
0312145v1
0303092v2
0508185v2
0702270v1
0110088v2
9712030v1
0701198v1
0610251v1
0402088v1
0310110v1
0507218v1
0207144v1
0312096v2
0406146v1
0612033v1
0606242v3
0507024v1
0502144v1
0507194v1