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A versatile single-photon-based quantum computing platform

222
Citations
June 1, 2024
Published Date

Research Abstract & Technology Focus

AbstractQuantum computing aims at exploiting quantum phenomena to efficiently perform computations that are unfeasible even for the most powerful classical supercomputers. Among the promising technological approaches, photonic quantum computing offers the advantages of low decoherence, information processing with modest cryogenic requirements, and native integration with classical and quantum networks. So far, quantum computing demonstrations with light have implemented specific tasks with specialized hardware, notably Gaussian boson sampling, which permits the quantum computational advantage to be realized. Here we report a cloud-accessible versatile quantum computing prototype based on single photons. The device comprises a high-efficiency quantum-dot single-photon source feeding a universal linear optical network on a reconfigurable chip for which hardware errors are compensated by a machine-learned transpilation process. Our full software stack allows remote control of the device to perform computations via logic gates or direct photonic operations. For gate-based computation, we benchmark one-, two- and three-qubit gates with state-of-the art fidelities of 99.6 ± 0.1%, 93.8 ± 0.6% and 86 ± 1.2%, respectively. We also implement a variational quantum eigensolver, which we use to calculate the energy levels of the hydrogen molecule with chemical accuracy. For photon native computation, we implement a classifier algorithm using a three-photon-based quantum neural network and report a six-photon boson sampling demonstration on a universal reconfigurable integrated circuit. Finally, we report on a heralded three-photon entanglement generation, a key milestone toward measurement-based quantum computing.
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What is the core focus of the research titled 'A versatile single-photon-based quantum computing platform'?

This literature focuses on: AbstractQuantum computing aims at exploiting quantum phenomena to efficiently perform computations that are unfeasible even for the most powerful classical supercomputers. Among the promising technological approaches, photonic quantum computing of...

Are there open-source GitHub repositories related to A versatile single-photon-based quantum computing platform?

Yes, open-source projects like QuipNetwork/xq-rs (A rust implementation of the Quip Network's quantum virtual machine.) are actively building upon these concepts.

What other academic literature is closely related to 'A versatile single-photon-based quantum computing platform'?

Yes, highly correlated activity was mapped. An entry titled 'A versatile single-photon-based quantum computing platform' discusses this: AbstractQuantum computing aims at exploiting quantum phenomena to efficiently perform computations that are unfeasible even for the most powerful c...

How is the concept of 'A versatile single-photon-based quantum computing platform' being discussed by engineers on Hacker News?

Yes, highly correlated activity was mapped. An entry titled 'Show HN: Open-source distributed quantum compute network' discusses this: Quip.Network addresses a critical bottleneck in quantum computing: limited access to expensive, proprietary hardware and inefficient utilization of...

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Commercial Realization

Startups and Open Source tools heavily associated with the concepts explored in this paper.

  • GitHub
    QuipNetwork/xq-rs
    A rust implementation of the Quip Network's quantum virtual machine.
  • GitHub
    QuipNetwork/xq-py
    A python implementation of the Quip Network's quantum virtual machine

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