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Main Authors: Aroch, Aviv, Kosloff, Ronnie, Kallush, Shimshon
Format: Preprint
Published: 2023
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Online Access:https://arxiv.org/abs/2309.07659
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author Aroch, Aviv
Kosloff, Ronnie
Kallush, Shimshon
author_facet Aroch, Aviv
Kosloff, Ronnie
Kallush, Shimshon
contents All quantum systems are subject to noise from the environment or external controls. This noise is a major obstacle to the realization of quantum technology. For example, noise limits the fidelity of quantum gates. Employing optimal control theory, we study the generation of quantum single and two-qubit gates. Specifically, we explore a Markovian model of phase and amplitude noise, leading to the degradation of the gate fidelity. We show that optimal control with such noise models generates control solutions to mitigate the loss of gate fidelity. The problem is formulated in Liouville space employing an extremely accurate numerical solver and the Krotov algorithm for solving the optimal control equations.
format Preprint
id arxiv_https___arxiv_org_abs_2309_07659
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Mitigating controller noise in quantum gates using optimal control theory
Aroch, Aviv
Kosloff, Ronnie
Kallush, Shimshon
Quantum Physics
All quantum systems are subject to noise from the environment or external controls. This noise is a major obstacle to the realization of quantum technology. For example, noise limits the fidelity of quantum gates. Employing optimal control theory, we study the generation of quantum single and two-qubit gates. Specifically, we explore a Markovian model of phase and amplitude noise, leading to the degradation of the gate fidelity. We show that optimal control with such noise models generates control solutions to mitigate the loss of gate fidelity. The problem is formulated in Liouville space employing an extremely accurate numerical solver and the Krotov algorithm for solving the optimal control equations.
title Mitigating controller noise in quantum gates using optimal control theory
topic Quantum Physics
url https://arxiv.org/abs/2309.07659