Quantum State Preparation by Controlled Dissipation in Finite Time: From Classical to Quantum Controllers
Abstract
We propose a general scheme for dissipatively preparing arbitrary pure quantum states on a multipartite qubit register in a finite number of basic control blocks. Our "splitting-subspace" approach relies on control resources that are available in a number of scalable quantum technologies (complete unitary control on the target system, an ancillary resettable qubit and controlled-not gates between the target and the ancilla), and can be seen as a "quantum-controller" implementation of a sequence of classical feedback loops. We show how a large degree of flexibility exists in engineering the required conditional operations, and make explicit contact with a stabilization protocol used for dissipative quantum state preparation and entanglement generation in recent experiments with trapped ions.
Cite
@article{arxiv.1209.5568,
title = {Quantum State Preparation by Controlled Dissipation in Finite Time: From Classical to Quantum Controllers},
author = {Giacomo Baggio and Francesco Ticozzi and Lorenza Viola},
journal= {arXiv preprint arXiv:1209.5568},
year = {2013}
}
Comments
10 pages, 2 figures. Submitted to CDC 2012