Controlling the uncontrollable: Quantum control of open-system dynamics

Author:

Kallush Shimshon12ORCID,Dann Roie2ORCID,Kosloff Ronnie2ORCID

Affiliation:

1. Sciences Department, Holon Academic Institute of Technology, 52 Golomb Street, Holon 58102, Israel.

2. The Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 9190401, Israel.

Abstract

Control of open quantum systems is essential for the realization of contemporary quantum science and technology. We demonstrate such control using a thermodynamically consistent framework, taking into account the fact that the drive can modify the system’s interaction with the environment. Such an effect is incorporated within the dynamical equation, leading to control-dependent dissipation. This relation serves as the key element for open-system control. The control paradigm is displayed by analyzing entropy-changing state-to-state transformations, such as heating and cooling. The difficult task of controlling quantum gates is achieved for nonunitary reset maps with complete memory loss. In addition, we identify a mechanism for controlling unitary gates by actively removing entropy from the system to the environment. We demonstrate a universal set of single- and double-qubit unitary gates under dissipation.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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