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February 26, 2026Nano Convergence0 citationsOpen Access

Active multiplexing for scalable generation and manipulation of photonic quantum states

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FKFumihiro KanedaMYMasahiro Yabuno

Key Points

  • The aim is to examine how active multiplexing can enable deterministic processes in photonic quantum systems.
  • Review of recent progress in photonic active multiplexing systems.
  • Assessment of quasi-deterministic photon generation and entangled state creation.
  • Analysis of measurement-based quantum computing architectures and hardware integration.
  • Active multiplexing transforms probabilistic processes into deterministic ones.
  • Significant advancements in hardware components for photonic systems are highlighted.
  • Key challenges for scalability in photonic quantum information processing are identified.

Abstract

Photons serve as essential carriers of quantum information in quantum computing, quantum networking, and quantum metrology. However, the lack of direct photon-photon interaction poses a fundamental barrier: the inherently probabilistic nature of nonlinear quantum operations. Active multiplexing has emerged as the critical strategy, transforming probabilistic nonlinear processes into deterministic building blocks for large-scale quantum systems. In this review, we explore the recent progress and potential architectures of photonic active multiplexing systems, ranging from the quasi-deterministic generation of single photons and complex entangled states to the realization of measurement-based quantum computing architectures. We also provide an overview of recent advancements in enabling hardware—including basic photon sources, detectors, switches, and their integration. By analyzing the state of the art and identifying key remaining challenges, we highlight how active multiplexing strategies serve as the cornerstone for the next generation of scalable photonic quantum information processing.

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Cite This Study

Kaneda et al. (2026) studied this question.

synapsesocial.com/papers/699fe44895ddcd3a253e8782https://doi.org/10.1186/s40580-026-00540-6
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