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YQ

Yaoshen Quantum

Yaoshen Quantum develops and commercializes ion‑trap quantum computing systems with fully proprietary technology.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Access to scalable, high-fidelity quantum computing hardware is limited by large, complex ion‑trap systems that require extensive infrastructure and expertise, hindering algorithm testing and integration with existing computational workflows.

Solution

Yaoshen Quantum offers a compact, high‑throughput optical ion‑trap quantum computer that combines a large optical aperture with a modular design, enabling standalone operation for quantum algorithm verification and seamless integration with supercomputers for advanced applications. The system’s decoupled vacuum and optical subsystems support flexible configuration of high‑NA optics for multi‑ion addressing, fluorescence collection, and optical tweezing. Complementary modular components—including high‑NA trap modules, multiphoton entanglement sources, and ultrafast femtosecond fiber lasers—provide researchers with a standardized, scalable hardware stack for diverse quantum research and industry workloads.

Target Audience

Primary customers are universities, research institutes, and industrial R&D labs that require high‑performance ion‑trap quantum processors and associated photonic components for algorithm testing, materials discovery, drug development, cryptanalysis, and large‑model training.

Features

  • Compact ion‑trap quantum computer with the world’s largest optical aperture for enhanced photon collection and control
  • Decoupled vacuum and external optical system allowing interchangeable high‑NA objective configurations (four directions) for multi‑ion laser addressing and fluorescence detection
  • Standalone operation for quantum circuit compilation and algorithm validation, plus optional integration with supercomputing resources
  • Modular high‑NA optical trap modules supporting quantum simulation, precision measurement, and hybrid atom‑ion experiments
  • Customizable multiphoton entanglement source system offering 2‑ to 8‑photon entangled states for quantum key distribution and teleportation
  • Ultrafast femtosecond fiber lasers at 780 nm and 1560 nm with >800 mW average power, near‑Fourier‑limited pulses for pumping nonlinear quantum optics setups
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