Towards a feasible implementation of quantum neural networks using quantum dots
Quantum Physics
2016-03-15 v3 Mesoscale and Nanoscale Physics
Abstract
We propose an implementation of quantum neural networks using an array of quantum dots with dipole-dipole interactions. We demonstrate that this implementation is both feasible and versatile by studying it within the framework of GaAs based quantum dot qubits coupled to a reservoir of acoustic phonons. Using numerically exact Feynman integral calculations, we have found that the quantum coherence in our neural networks survive for over a hundred ps even at liquid nitrogen temperatures (77 K), which is three orders of magnitude higher than current implementations which are based on SQUID-based systems operating at temperatures in the mK range.
Cite
@article{arxiv.1503.05125,
title = {Towards a feasible implementation of quantum neural networks using quantum dots},
author = {Mikhail V. Altaisky and Nadezhda N. Zolnikova and Natalia E. Kaputkina and Victor A. Krylov and Yurii E. Lozovik and Nikesh S. Dattani},
journal= {arXiv preprint arXiv:1503.05125},
year = {2016}
}
Comments
revtex, 5 pages, 2 eps figures