Structured Singular Value Analysis for Spintronics Network Information Transfer Control

Abstract

Control laws for selective transfer of information encoded in excitations of a quantum network, based on shaping the energy landscape using time-invariant, spatially-varying bias fields, can be successfully designed by using numerical optimization. Such control laws, already departing from classicality by replacing closed-loop asymptotic stability with alternative notions of localization, have the intriguing property that for all practical purposes they achieve the upper bound on the fidelity, yet the (logarithmic)sensitivity of the fidelity to such structured perturbation as spin coupling errors and bias field leakages is nearly vanishing. Here, these differential sensitivity results are extended to large structured variations using -design tools to reveal a crossover region in the space of controllers where objectives usually thought to be conflicting are actually concordant.

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Document Details

Document Type
Technical Report
Publication Date
Jun 12, 2017
Accession Number
AD1063313

Entities

People

  • Edmond A. Jonckheere
  • Frank C Langbein
  • Sophie G. Schirmer

Organizations

  • University of Southern California

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Automatic
  • Computer Science
  • Control Systems
  • Couplings
  • Electrical Engineering
  • Electronic Mail
  • Engineering
  • Equations
  • Frequency Domain
  • Information Transfer
  • Magnetic Fields
  • Optical Lattices
  • Reliability
  • Simulations
  • Simulators
  • Time Domain
  • Wave Functions

Fields of Study

  • Physics

Readers

  • Control Systems Engineering.
  • Quantum spin resonance or Electron Paramagnetic Resonance spectroscopy.
  • Systems Analysis and Design

Technology Areas

  • Microelectronics
  • Microelectronics - Microelectromechanical Systems
  • Quantum Computing
  • Quantum Science - Quantum Dots
  • Space
  • Space - Spacecraft Maneuvers