Context-Aware Coupler Reconfiguration for Tunable Coupler-Based Superconducting Quantum Computers

Fuente: arXiv
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Main Authors: Hour, Leanghok, Heng, Sovanmonynuth, Heng, Sengthai, Go, Myeongseong, Han, Youngsun
Format: Preprint
Published: 2024
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author Hour, Leanghok
Heng, Sovanmonynuth
Heng, Sengthai
Go, Myeongseong
Han, Youngsun
author_facet Hour, Leanghok
Heng, Sovanmonynuth
Heng, Sengthai
Go, Myeongseong
Han, Youngsun
contents We address interconnection challenges in limited-qubit superconducting quantum computers (SQC), which often face crosstalk errors due to expanded qubit interactions during operations. Existing mitigation methods carry trade-offs, like hardware couplers or software-based gate scheduling. Our innovation, the Context-Aware COupler REconfiguration (CA-CORE) compilation method, aligns with application-specific design principles. It optimizes the qubit connections for improved SQC performance, leveraging tunable couplers. Through contextual analysis of qubit correlations, we configure an efficient coupling map considering SQC constraints. Our method reduces depth and SWAP operations by up to 18.84% and 42.47%, respectively. It also enhances circuit fidelity by 40% compared to IBM and Google's topologies. Notably, our method compiles a 33-qubit circuit in less than 1 second.
format Preprint
id arxiv_https___arxiv_org_abs_2401_03817
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Context-Aware Coupler Reconfiguration for Tunable Coupler-Based Superconducting Quantum Computers
Hour, Leanghok
Heng, Sovanmonynuth
Heng, Sengthai
Go, Myeongseong
Han, Youngsun
Quantum Physics
We address interconnection challenges in limited-qubit superconducting quantum computers (SQC), which often face crosstalk errors due to expanded qubit interactions during operations. Existing mitigation methods carry trade-offs, like hardware couplers or software-based gate scheduling. Our innovation, the Context-Aware COupler REconfiguration (CA-CORE) compilation method, aligns with application-specific design principles. It optimizes the qubit connections for improved SQC performance, leveraging tunable couplers. Through contextual analysis of qubit correlations, we configure an efficient coupling map considering SQC constraints. Our method reduces depth and SWAP operations by up to 18.84% and 42.47%, respectively. It also enhances circuit fidelity by 40% compared to IBM and Google's topologies. Notably, our method compiles a 33-qubit circuit in less than 1 second.
title Context-Aware Coupler Reconfiguration for Tunable Coupler-Based Superconducting Quantum Computers
topic Quantum Physics
url https://arxiv.org/abs/2401.03817