Implementation of a scalable universal two-qubit quantum processor with electron and nuclear spins in a trapped ion

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Auteurs principaux: Bian, Ji, Liu, Teng, Lao, Qifeng, Ding, Min, Zhang, Huiyi, Rao, Xinxin, Lu, Pengfei, Luo, Le
Format: Preprint
Publié: 2024
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author Bian, Ji
Liu, Teng
Lao, Qifeng
Ding, Min
Zhang, Huiyi
Rao, Xinxin
Lu, Pengfei
Luo, Le
author_facet Bian, Ji
Liu, Teng
Lao, Qifeng
Ding, Min
Zhang, Huiyi
Rao, Xinxin
Lu, Pengfei
Luo, Le
contents Increasing the quantum information processing power with limited number of hosts is vital for achieving quantum advantage. Here we propose a novel scheme that achieves a scalable n-ion-2n-qubit quantum processor utilizing four internal levels of each ion, and experimentally implement a 1-ion-2-qubit universal processor using the valence electron spin and nuclear spin of a single 171Yb+ ion. Fidelities of single-qubit and two-qubit gates are around 0.98 obtained by quantum process tomography. Additionally, the Grover's algorithm is implemented with a successful rate exceeding 0.99. We provide explicit scaling-up protocols based on standard laser-less and laser-based frameworks, and further demonstrate that the electron/nuclear-spin scheme allows less demanding two-qubit entangling gates between different ions. The replacement of some inter-atomic gates by intra-atomic gates could increase the fidelity of some quantum circuits. Our work paves the way towards achieving 2n-times increase in the size of quantum computational Hilbert space with n ions.
format Preprint
id arxiv_https___arxiv_org_abs_2407_01196
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Implementation of a scalable universal two-qubit quantum processor with electron and nuclear spins in a trapped ion
Bian, Ji
Liu, Teng
Lao, Qifeng
Ding, Min
Zhang, Huiyi
Rao, Xinxin
Lu, Pengfei
Luo, Le
Quantum Physics
Increasing the quantum information processing power with limited number of hosts is vital for achieving quantum advantage. Here we propose a novel scheme that achieves a scalable n-ion-2n-qubit quantum processor utilizing four internal levels of each ion, and experimentally implement a 1-ion-2-qubit universal processor using the valence electron spin and nuclear spin of a single 171Yb+ ion. Fidelities of single-qubit and two-qubit gates are around 0.98 obtained by quantum process tomography. Additionally, the Grover's algorithm is implemented with a successful rate exceeding 0.99. We provide explicit scaling-up protocols based on standard laser-less and laser-based frameworks, and further demonstrate that the electron/nuclear-spin scheme allows less demanding two-qubit entangling gates between different ions. The replacement of some inter-atomic gates by intra-atomic gates could increase the fidelity of some quantum circuits. Our work paves the way towards achieving 2n-times increase in the size of quantum computational Hilbert space with n ions.
title Implementation of a scalable universal two-qubit quantum processor with electron and nuclear spins in a trapped ion
topic Quantum Physics
url https://arxiv.org/abs/2407.01196