Autoadaptive Lattices of Magnetic Vortices in Coherent Domains of Condensed Matter for “Intelligent” Quantum Computing and Storing
摘要
One of the most ambitious challenges in science for the next decades is the realization of a technology able to reproduce the higher human brain capabilities (such as structured thoughts, intuition and creativity, non-local and symbolic memory and so on) but without its limitations in computational power and resources availability. On the other hand, the alleged supremacy of quantum computing compared with its classical counterpart on one side and the possibility that the dynamics of human brain could be ultimately quantum on the other, has suggested the consideration of quantum mechanics as the ground on which realize such technological solutions to achieve a human - like enhanced artificial intelligence. Nevertheless, all the solutions so far proposed, even based on quantum mechanics, are affected by serious issues that make them practically unusable or useless on technological scale. In this work, basing on our previous results in the field of QED coherence in matter, we’ll discuss the superconductive behavior of the coherent state of liquid water and its interaction with magnetic fields showing how it could be considered to realize a novel, performing and versatile quantum morphing computing and storing system able, in principle, to emulate higher functions of human brain at highly increased speed, scalability, stability and with low energy consumption.