Qunity: A Unified Language for Quantum and Classical Computing

Author:

Voichick Finn1ORCID,Li Liyi1ORCID,Rand Robert2ORCID,Hicks Michael3ORCID

Affiliation:

1. University of Maryland, USA

2. University of Chicago, USA

3. University of Maryland, USA / Amazon, USA

Abstract

We introduce Qunity, a new quantum programming language designed to treat quantum computing as a natural generalization of classical computing. Qunity presents a unified syntax where familiar programming constructs can have both quantum and classical effects. For example, one can use sum types to implement the direct sum of linear operators, exception-handling syntax to implement projective measurements, and aliasing to induce entanglement. Further, Qunity takes advantage of the overlooked BQP subroutine theorem, allowing one to construct reversible subroutines from irreversible quantum algorithms through the uncomputation of "garbage" outputs. Unlike existing languages that enable quantum aspects with separate add-ons (like a classical language with quantum gates bolted on), Qunity provides a unified syntax and a novel denotational semantics that guarantees that programs are quantum mechanically valid. We present Qunity's syntax, type system, and denotational semantics, showing how it can cleanly express several quantum algorithms. We also detail how Qunity can be compiled into a low-level qubit circuit language like OpenQASM, proving the realizability of our design.

Funder

Advanced Scientific Computing Research

Air Force Office of Scientific Research

National Science Foundation

Publisher

Association for Computing Machinery (ACM)

Subject

Safety, Risk, Reliability and Quality,Software

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Quff: A Dynamically Typed Hybrid Quantum-Classical Programming Language;Proceedings of the 21st ACM SIGPLAN International Conference on Managed Programming Languages and Runtimes;2024-09-13

2. The T-Complexity Costs of Error Correction for Control Flow in Quantum Computation;Proceedings of the ACM on Programming Languages;2024-06-20

3. Quantum Control Machine: The Limits of Control Flow in Quantum Programming;Proceedings of the ACM on Programming Languages;2024-04-29

4. Jeopardy: An Invertible Functional Programming Language;Lecture Notes in Computer Science;2024

5. Approximate Relational Reasoning for Quantum Programs;Lecture Notes in Computer Science;2024

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