Mi-Bo Sui-Li
Products & Services
Full-Stack Systems
Superconducting quantum computing systems with pulse-level control
Quantum Systems
Superconducting Quantum Processors
Fluxonium and Transmon dual-system, benchmark process, standard packaging
Quantum Control & Operating System
Modular RF control, acquisition, synchronization and low-latency feedback
Solutions
Superconducting Quantum-Processor Foundry and Co-Development
Flexible engagement models and an advanced process library for both R&D and system integration.
End-to-End Foundry Services for Superconducting Digital Circuits
End-to-end services from design support to cryogenic characterization.
Research
Fluxonium Qubits and Processors
Fluxonium qubits, coupling architectures, and scalable quantum processors.
Materials and Fabrication Techniques
Superconducting materials, thin-film processes, and wafer-scale fabrication.
Decoherence
Understanding and suppressing noise mechanisms that limit qubit coherence.
Gate Engineering
Design, calibration, and validation of high-fidelity quantum gates.
Cryogenic Control
Cryogenic control and electronics for millikelvin environments.
Operating and Control Systems
Scalable operating, control, and system architectures for quantum processors.
Quantum Error Correction
Quantum error correction, leakage detection, and fault-tolerant computing.
Company
About Us
Mi-Bo Sui-Li (幂波隧力)pioneers quantum intelligence. Founded by veterans from the Alibaba Quantum Laboratory and S Lab of the Greater Bay Area Quantum Science Center, our team brings a nine-year heritage of independent thinking and technological breakthroughs. Powered by world-class interdisciplinary talent, we aim to be the dual disruptor of computing —— transcending the classical with quantum, reshaping the status quo through innovation.
Careers
Join us in unlocking the full potential of quantum computing
Contact Us
Get in touch with our team
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Research
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Paper detail
RESEARCH PAPER
Leakage benchmarking for universal gate sets
Wu, B., Wang, X., Yuan, X., Huang, C., & Chen, J.
gate_engineering
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Gate Engineering
Explore our latest research
Leakage benchmarking for universal gate sets
Compiling arbitrary single-qubit gates via the phase-shifts of microwave pulses
Quantum instruction set design for performance
Related Papers
Compiling arbitrary single-qubit gates via the phase-shifts of microwave pulses
Quantum instruction set design for performance