计算机科学
量子计算机
量子电路
量子位元
程序员
编译程序
启发式
任务(项目管理)
计算机硬件
忠诚
计算机工程
量子
嵌入式系统
量子纠错
程序设计语言
人工智能
物理
经济
电信
管理
量子力学
作者
Siyuan Niu,Adrien Suau,Gabriel Staffelbach,Aida Todri‐Sanial
标识
DOI:10.1109/tqe.2020.3026544
摘要
Due to several physical limitations in the realisation of quantum hardware, today's quantum computers are qualified as Noisy Intermediate-Scale Quantum (NISQ) hardware. NISQ hardware is characterized by a small number of qubits (50 to a few hundred) and noisy operations. Moreover, current realisations of superconducting quantum chips do not have the ideal all-to-all connectivity between qubits but rather at most a nearest-neighbour connectivity. All these hardware restrictions add supplementary low-level requirements. They need to be addressed before submitting the quantum circuit to an actual chip. Satisfying these requirements is a tedious task for the programmer. Instead, the task of adapting the quantum circuit to a given hardware is left to the compiler. In this paper, we propose a Hardware-Aware mapping transition algorithm (HA) that takes the calibration data into account with the aim to improve the overall fidelity of the circuit. Evaluation results on IBM quantum hardware show that our HA approach can outperform the state of the art both in terms of the number of additional gates and circuit fidelity.
科研通智能强力驱动
Strongly Powered by AbleSci AI