Efficiency of optimal control for noisy spin qubits in diamond

Fuente: arXiv
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Main Authors: Lim, Hendry M., Genov, Genko T., Sailer, Roberto, Fahrurrachman, Alfaiz, Majidi, Muhammad A., Jelezko, Fedor, Said, Ressa S.
Format: Preprint
Published: 2024
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_version_ 1866909915740635136
author Lim, Hendry M.
Genov, Genko T.
Sailer, Roberto
Fahrurrachman, Alfaiz
Majidi, Muhammad A.
Jelezko, Fedor
Said, Ressa S.
author_facet Lim, Hendry M.
Genov, Genko T.
Sailer, Roberto
Fahrurrachman, Alfaiz
Majidi, Muhammad A.
Jelezko, Fedor
Said, Ressa S.
contents Decoherence is a major challenge for quantum technologies. A way to mitigate its negative impact is by employing quantum optimal control. The decoherence dynamics varies significantly based on the characteristics of the surrounding environment of qubits, consequently affecting the outcome of the control optimization. In this work, we investigate the dependence of the shape of a spin inversion control pulse on the correlation time of the environment noise. Furthermore, we analyze the effects of constraints and optimization options on the optimization outcome and identify a set of strategies that improve the optimization performance. Finally, we present an experimental realization of the numerically-optimized pulses validating the optimization feasibility. Our work serves as a generic yet essential guide to implementing optimal control in the presence of realistic noise, e.g., in nitrogen-vacancy centers in diamond.
format Preprint
id arxiv_https___arxiv_org_abs_2411_05078
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Efficiency of optimal control for noisy spin qubits in diamond
Lim, Hendry M.
Genov, Genko T.
Sailer, Roberto
Fahrurrachman, Alfaiz
Majidi, Muhammad A.
Jelezko, Fedor
Said, Ressa S.
Quantum Physics
Decoherence is a major challenge for quantum technologies. A way to mitigate its negative impact is by employing quantum optimal control. The decoherence dynamics varies significantly based on the characteristics of the surrounding environment of qubits, consequently affecting the outcome of the control optimization. In this work, we investigate the dependence of the shape of a spin inversion control pulse on the correlation time of the environment noise. Furthermore, we analyze the effects of constraints and optimization options on the optimization outcome and identify a set of strategies that improve the optimization performance. Finally, we present an experimental realization of the numerically-optimized pulses validating the optimization feasibility. Our work serves as a generic yet essential guide to implementing optimal control in the presence of realistic noise, e.g., in nitrogen-vacancy centers in diamond.
title Efficiency of optimal control for noisy spin qubits in diamond
topic Quantum Physics
url https://arxiv.org/abs/2411.05078