$Q|SI\rangle$: A Quantum Programming Environment

October 26, 2017 Β· Declared Dead Β· πŸ› Symposium on Real-Time and Hybrid Systems

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Authors Shusen Liu, Xin Wang, Li Zhou, Ji Guan, Yinan Li, Yang He, Runyao Duan, Mingsheng Ying arXiv ID 1710.09500 Category quant-ph: Quantum Computing Cross-listed cs.PL Citations 37 Venue Symposium on Real-Time and Hybrid Systems Last Checked 6 months ago
Abstract
This paper describes a quantum programming environment, named $Q|SI\rangle$. It is a platform embedded in the .Net language that supports quantum programming using a quantum extension of the $\mathbf{while}$-language. The framework of the platform includes a compiler of the quantum $\mathbf{while}$-language and a suite of tools for simulating quantum computation, optimizing quantum circuits, and analyzing and verifying quantum programs. Throughout the paper, using $Q|SI\rangle$ to simulate quantum behaviors on classical platforms with a combination of components is demonstrated. The scalable framework allows the user to program customized functions on the platform. The compiler works as the core of $Q|SI\rangle$ bridging the gap from quantum hardware to quantum software. The built-in decomposition algorithms enable the universal quantum computation on the present quantum hardware.
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