Optimal control for maximally creating and maintaining a superposition state of a two‐level system under the influence of Markovian decoherence

Author:

Ohtsuki Yukiyoshi1ORCID,Mikami Suicho1,Ajiki Toru1,Tannor David J.2

Affiliation:

1. Department of Chemistry, Graduate School of Science Tohoku University Sendai Japan

2. Department of Chemical Physics Weizmann Institute of Science Rehovot Israel

Abstract

AbstractReducing decoherence is an essential step toward realizing general‐purpose quantum computers beyond the present noisy intermediate‐scale quantum (NISQ) computers. To this end, dynamical decoupling (DD) approaches in which external fields are applied to qubits are often adopted. We numerically study DD using a two‐level model system (qubit) under the influence of Markovian decoherence by using quantum optimal control theory with slightly modified settings, in which the physical objective is to maximally create and maintain a specified superposition state in a specified control period. An optimal pulse is numerically designed while systematically varying the values of dephasing, population decay, pulse fluence, and control period as well as using two kinds of objective functionals. The decrease in purity due to the decoherence limits the ability to maintain a coherent superposition state; we refer to the state of maximal purity that can be maintained as the saturated value. The optimally shaped pulse minimizes the negative effect of decoherence by gradually populating and continuously replenishing the state of saturated purity.

Funder

Israel Science Foundation

Publisher

Wiley

Subject

General Chemistry

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