论文标题
在实际量子计算设备上实现量子算法
Realizing Quantum Algorithms on Real Quantum Computing Devices
论文作者
论文摘要
量子计算目前正在从学术思想转变为实践现实。云中的量子计算已经可用,允许来自世界各地的用户开发和执行真实的量子算法。但是,正在大力投资于Google,IBM,Rigetti,Intel,Ionq和Xanadu等新技术的公司遵循多种技术方法。这导致了迄今为止我们拥有实质上不同的量子计算设备的情况。它们的数量和类型及其之间的连通性大多不同。因此,可以使用用于实现给定量子计算设备上预期的量子功能的各种方法。本文提供了对该域的介绍和概述,并描述了相应的方法,也称为编译器,映射器,合成器,转介剂或路由器。
Quantum computing is currently moving from an academic idea to a practical reality. Quantum computing in the cloud is already available and allows users from all over the world to develop and execute real quantum algorithms. However, companies which are heavily investing in this new technology such as Google, IBM, Rigetti, Intel, IonQ, and Xanadu follow diverse technological approaches. This led to a situation where we have substantially different quantum computing devices available thus far. They mostly differ in the number and kind of qubits and the connectivity between them. Because of that, various methods for realizing the intended quantum functionality on a given quantum computing device are available. This paper provides an introduction and overview into this domain and describes corresponding methods, also referred to as compilers, mappers, synthesizers, transpilers, or routers.