Two-photon-transition superadiabatic passage in an nitrogen-vacancy center in diamond

Fuente: arXiv
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Auteurs principaux: Gong, Musang, Yu, Min, Chu, Yaoming, Chen, Wei, Cao, Qingyun, Wang, Ning, Cai, Jianming, Betzholz, Ralf, Giannelli, Luigi
Format: Preprint
Publié: 2023
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author Gong, Musang
Yu, Min
Chu, Yaoming
Chen, Wei
Cao, Qingyun
Wang, Ning
Cai, Jianming
Betzholz, Ralf
Giannelli, Luigi
author_facet Gong, Musang
Yu, Min
Chu, Yaoming
Chen, Wei
Cao, Qingyun
Wang, Ning
Cai, Jianming
Betzholz, Ralf
Giannelli, Luigi
contents Reaching a given target quantum state with high fidelity and fast operation speed close to the quantum limit represents an important goal in quantum information science. Here, we experimentally demonstrate superadiabatic quantum driving to achieve population transfer in a three-level solid-state spin system. Starting from traditional stimulated Raman adiabatic passage (STIRAP), our approach implements superadiabatic corrections to the STIRAP Hamiltonians with several paradigmatic pulse shapes. It requires no need of intense microwave pulses or long transfer times and shows enhanced robustness over pulse imperfections. These results might provide a useful tool for quantum information processing and coherent manipulations of quantum systems.
format Preprint
id arxiv_https___arxiv_org_abs_2307_01675
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Two-photon-transition superadiabatic passage in an nitrogen-vacancy center in diamond
Gong, Musang
Yu, Min
Chu, Yaoming
Chen, Wei
Cao, Qingyun
Wang, Ning
Cai, Jianming
Betzholz, Ralf
Giannelli, Luigi
Quantum Physics
Reaching a given target quantum state with high fidelity and fast operation speed close to the quantum limit represents an important goal in quantum information science. Here, we experimentally demonstrate superadiabatic quantum driving to achieve population transfer in a three-level solid-state spin system. Starting from traditional stimulated Raman adiabatic passage (STIRAP), our approach implements superadiabatic corrections to the STIRAP Hamiltonians with several paradigmatic pulse shapes. It requires no need of intense microwave pulses or long transfer times and shows enhanced robustness over pulse imperfections. These results might provide a useful tool for quantum information processing and coherent manipulations of quantum systems.
title Two-photon-transition superadiabatic passage in an nitrogen-vacancy center in diamond
topic Quantum Physics
url https://arxiv.org/abs/2307.01675