Entangled Quantum Memristors

PROJECT OVERVIEW

We propose the interaction of two quantum memristors via capacitive and inductive coupling in feasible superconducting circuit architectures. In this composed system the input gets correlated in time, which changes the dynamic response of each quantum memristor in terms of its pinched hysteresis curve and nontrivial entanglement. In this sense, the concurrence and memristive dynamics follow an inverse behavior, showing maximal values of entanglement when the hysteresis curve is minimal and vice versa. Moreover, the direction followed in time by the hysteresis curve is reversed whenever the quantum memristor entanglement is maximal. The study of composed quantum memristors paves the way for developing neuromorphic quantum computers and native quantum neural networks, on the path towards quantum advantage with current noisy intermediate-scale quantum era technologies.

DETAILS
  • Research Type Article
  • RESEARCH YEAR 2021
  • Journal Name Physical Review A
  • Authors S. Kumar, F. A. Cárdenas-López, N. N. Hegade, X. Chen, F. Albarrán-Arriagada, E. Solano, G. Alvarado Barrios
  • Category Quantum Computing, Quantum Control
  • DOI 10.1103/PhysRevA.104.062605