학술논문

Stabilizing Wall States to Protect Quantum Information
Document Type
Periodical
Source
IEEE Control Systems Letters IEEE Control Syst. Lett. Control Systems Letters, IEEE. 8:712-717 2024
Subject
Robotics and Control Systems
Computing and Processing
Components, Circuits, Devices and Systems
Task analysis
Noise
Logic gates
Couplings
Quantum system
Mathematical models
Error correction
Quantum information and control
quantum error correction
quantum dynamical decoupling
Language
ISSN
2475-1456
Abstract
A new approach to the decoupling of quantum information from undesired environmental interactions is proposed, based on the preparation and stabilization of particular “wall” states on the interface between the system of interest and the environment. These states can be selected by minimizing the purity loss of the system of interest or by identifying the dominant interaction couplings. The effectiveness of the method is discussed with numerical simulations for paradigmatic systems and different ways to stabilize the wall state. Some promising features of stabilization via strong Hamiltonian driving are highlighted in the examples.