全面介绍英特尔量子SDK

Xin-Chuan Wu, S. Premaratne, Kevin Rasch
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引用次数: 0

摘要

英特尔(R)量子软件开发工具包(SDK)为开发人员提供了一个全面的平台,可以使用基于llvm的编译器和友好的c++语言扩展来创建量子应用程序。这种全栈解决方案促进了量子电路的表达和优化,并包括一个量子运行时库,用于在经典内核和量子内核之间无缝混合执行。运行时支持量子电路的动态参数确定,允许在单个程序中定义变分算法的量子和经典组件,编译一次,并显着减少执行延迟。该SDK提供了一套量子模拟器,包括对英特尔量子硬件组件(如量子比特控制处理器、控制电子设备和量子点量子比特)的模拟。通过统一的接口,英特尔量子SDK允许用户针对理想的量子比特模拟器,现实的英特尔量子硬件模拟器和未来的英特尔量子硬件,实现可扩展的混合量子-经典变分算法的高效优化,编译和执行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comprehensive Introduction to the Intel Quantum SDK
The Intel(R) Quantum Software Development Kit (SDK) offers a comprehensive platform for developers to create quantum applications using an LLVM-based compiler with user-friendly C++ language extensions. This full-stack solution facilitates the expression and optimization of quantum circuits and includes a quantum runtime library for seamless hybrid execution between classical and quantum kernels. The runtime enables dynamic parameter determination for quantum circuits, allowing both quantum and classical components of variational algorithms to be defined within a single program, compiled once, and significantly reducing execution latency. The SDK features a suite of quantum simulators, including simulations of Intel's quantum hardware components such as qubit control processors, control electronics, and quantum dot qubits. With a unified interface, the Intel Quantum SDK allows users to target ideal qubit simulators, realistic Intel quantum hardware simulators, and future Intel quantum hardware, enabling efficient optimization, compilation, and execution of scalable hybrid quantum-classical variational algorithms.
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