Back to Search Start Over

Tackling the Qubit Mapping Problem for NISQ-Era Quantum Devices

Authors :
Li, Gushu
Ding, Yufei
Xie, Yuan
Li, Gushu
Ding, Yufei
Xie, Yuan
Publication Year :
2019

Abstract

Due to little consideration in the hardware constraints, e.g., limited connections between physical qubits to enable twoqubit gates, most quantum algorithms cannot be directly executed on the Noisy Intermediate-Scale Quantum (NISQ) devices. Dynamically remapping logical qubits to physical qubits in the compiler is needed to enable the two-qubit gates in the algorithm, which introduces additional operations and inevitably reduces the fidelity of the algorithm. Previous solutions in finding such remapping suffer from high complexity, poor initial mapping quality, and limited flexibility and controllability. To address these drawbacks mentioned above, this paper proposes a SWAP-based BidiREctional heuristic search algorithm (SABRE), which is applicable to NISQ devices with arbitrary connections between qubits. By optimizing every search attempt, globally optimizing the initial mapping using a novel reverse traversal technique, introducing the decay effect to enable the trade-off between the depth and the number of gates of the entire algorithm, SABRE outperforms the best known algorithm with exponential speedup and comparable or better results on various benchmarks. © 2019 Association for Computing Machinery.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1422562200
Document Type :
Electronic Resource