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April 1, 2026npj Nanophotonics6 citationsOpen Access

Recent progress towards large-scale integrated photonic quantum computation

HZHuihui ZhuZhejiang University of Science and TechnologyTCTian ChenBeijing Institute of TechnologyHMHaoran MaTiangong University

Key Points

  • This work aims to summarize advancements in integrated photonic chips for quantum computing and their applications.
  • Overview of integrated photonic platforms and components for quantum systems
  • Discussion on applications in both NISQ era and universal quantum computing
  • Analysis of challenges and prospects for chip-based quantum networks
  • Integrated photonic chips offer advantages in scalability, stability, and cost
  • Applications of integrated chips span from NISQ to universal quantum computing
  • Identified key challenges in achieving high-performance chip-based quantum systems

Abstract

Abstract Recent years have witnessed significant progress in quantum computing and its applications, driven by the emergence of integrated quantum photonic chips. These chips offer significant advantages of scalability, stability, and low-cost advantages, enabling new possibilities in miniaturized quantum systems. Here, we provide an overview of the advances in integrated photonic chips for quantum computing, beginning with a summary of the prevalent photonic integrated platforms and key components for quantum computing systems. We then discuss a range of quantum computing applications, which are divided into two main directions: one is the Noisy Intermediate Scale Quantum (NISQ) era, and the other is towards the future universal quantum computing. Finally, the review culminates in a perspective on the challenges of high-performance chip-based quantum computing, as well as a prospect for future opportunities in integrated quantum networks.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/69cd7af55652765b073a8893https://doi.org/10.1038/s44310-026-00114-8
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