Quantum Virtual Machines
Runzhou Tao, Hongzheng Zhu, Jason Nieh, Jianan Yao, Ronghui Gu
摘要
Cloud computing services offer time on quantum computers, but users are forced to each use the entire quantum computer to run their programs as there is no way to multiplex a quantum computer among multiple programs at the same time. We present HyperQ, a system that introduces virtual machines for quantum computers to provide fault isolation, better resource utilization, and lower latency for quantum cloud computing. A quantum virtual machine is defined in terms of quantum computer hardware, specifically its quantum gates and qubits arranged in a hardware-specific topology. HyperQ enables quantum virtual machines to be simultaneously executed together on a quantum computer by multiplexing them in time and space on the hardware and ensuring that they are isolated from one another. HyperQ works with existing quantum programs and compiler frameworks; programs are simply compiled to run in virtual machines without the programs or compilers needing to know what else might be executed at the same time. We have implemented HyperQ for the IBM quantum computing service, the largest quantum computing fleet in the world. Our experimental results running quantum programs in virtual machines using the IBM service demonstrate that HyperQ can increase utilization and throughput while reducing program latency, by up to an order of magnitude, without sacrificing, and in some cases improving, fidelity in the results of quantum program execution.
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引用它的顶会 Paper4
- qTPU: Hybrid Tensor Networks for Quantum-Classical AccelerationNathaniel Tornow, Emmanouil Giortamis, Dennis Sprokholt, Christian Mendl 等OSDI 2026 · 被引用 1 次
- Highly Automated Verification of Security Properties for Unmodified System SoftwareGanxiang Yang, Wei Qiang, Yi Rong, Xuheng Li 等ASPLOS 2026 · 被引用 1 次
- Synthesis of Compact and Expressive Quantum-Circuit OptimizationsWei Qiang, Ronghui GuOOPSLA 2026
- Equality Saturation for Quantum Circuit OptimizationGanxiang Yang, Paige Raun, Runzhou Tao, Ronghui GuPLDI 2026
它引用的顶会 Paper12
- Software Mitigation of Crosstalk on Noisy Intermediate-Scale Quantum ComputersPrakash Murali, David C. McKay, Margaret Martonosi, Ali Javadi-AbhariASPLOS 2020 · 被引用 253 次
- Time-optimal Qubit mappingChi Zhang, Ari B. Hayes, Longfei Qiu, Yuwei Jin 等ASPLOS 2021 · 被引用 72 次
- A Secure and Formally Verified Linux KVM HypervisorShih-Wei Li, Xupeng Li, Ronghui Gu, Jason Nieh 等S&P 2021 · 被引用 72 次
- QuCloud: A New Qubit Mapping Mechanism for Multi-programming Quantum Computing in Cloud EnvironmentLei Liu, Xinglei DouHPCA 2021 · 被引用 60 次
- Design and Verification of the Arm Confidential Compute ArchitectureXupeng Li, Xuheng Li, Christoffer Dall, Ronghui Gu 等OSDI 2022 · 被引用 60 次
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