Non-invasive mid-circuit measurement and reset on atomic qubits

Fuente: arXiv
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Hauptverfasser: Chen, Zuo-Yao, Goetting, Isabella, Toh, George, Yu, Yichao, Shalaev, Mikhail, Saha, Sagnik, Kalakuntla, Ashish, Shi, Harriet Bufan, Monroe, Christopher, Kozhanov, Alexander, Noel, Crystal
Format: Preprint
Veröffentlicht: 2025
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author Chen, Zuo-Yao
Goetting, Isabella
Toh, George
Yu, Yichao
Shalaev, Mikhail
Saha, Sagnik
Kalakuntla, Ashish
Shi, Harriet Bufan
Monroe, Christopher
Kozhanov, Alexander
Noel, Crystal
author_facet Chen, Zuo-Yao
Goetting, Isabella
Toh, George
Yu, Yichao
Shalaev, Mikhail
Saha, Sagnik
Kalakuntla, Ashish
Shi, Harriet Bufan
Monroe, Christopher
Kozhanov, Alexander
Noel, Crystal
contents Mid-circuit measurement and reset of subsets of qubits is a crucial ingredient of quantum error correction and many quantum information applications. Measurement of atomic qubits is accomplished through resonant fluorescence, which typically disturbs neighboring atoms due to photon scattering. We propose and prototype a new scheme for measurement that provides both spatial and spectral isolation by using tightly-focused individual laser beams and narrow atomic transitions. The unique advantage of this scheme is that all operations are applied exclusively to the read-out qubit, with negligible disturbance to the other qubits of the same species and little overhead. In this letter, we pave the way for non-invasive and high fidelity mid-circuit measurement and demonstrate all key building blocks on a single trapped barium ion.
format Preprint
id arxiv_https___arxiv_org_abs_2504_12538
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Non-invasive mid-circuit measurement and reset on atomic qubits
Chen, Zuo-Yao
Goetting, Isabella
Toh, George
Yu, Yichao
Shalaev, Mikhail
Saha, Sagnik
Kalakuntla, Ashish
Shi, Harriet Bufan
Monroe, Christopher
Kozhanov, Alexander
Noel, Crystal
Quantum Physics
Atomic Physics
Mid-circuit measurement and reset of subsets of qubits is a crucial ingredient of quantum error correction and many quantum information applications. Measurement of atomic qubits is accomplished through resonant fluorescence, which typically disturbs neighboring atoms due to photon scattering. We propose and prototype a new scheme for measurement that provides both spatial and spectral isolation by using tightly-focused individual laser beams and narrow atomic transitions. The unique advantage of this scheme is that all operations are applied exclusively to the read-out qubit, with negligible disturbance to the other qubits of the same species and little overhead. In this letter, we pave the way for non-invasive and high fidelity mid-circuit measurement and demonstrate all key building blocks on a single trapped barium ion.
title Non-invasive mid-circuit measurement and reset on atomic qubits
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2504.12538