The Quantum and Hybrid Classical-Quantum Computing SoCs track explores the innovative integration of quantum computing algorithms and hybrid classical-quantum paradigms within embedded multicore architectures. This track aims to highlight the transformative potential of deploying quantum-inspired and quantum acceleration technologies directly on edge and high-performance computing devices, enabling advanced optimization and enhancing system computational capacity. Participants will delve into state-of-the-art research, practical hardware-software co-design implementations, and emerging trends in the field, covering applications such as QML acceleration, hybrid computing models, and complex problem-solving. Join us to uncover the future of quantum-enabled systems and their impact on various industries.
Topics of Interest:
- Quantum algorithms for multicore SoCs
- Quantum Machine Learning (QML) acceleration
- Hybrid classical-quantum hardware/software co-design
- Quantum-inspired computing architectures
- Quantum resource management and error mitigation
- Hybrid processing platforms and frameworks
- Quantum computing for big data and optimization
- Quantum secure communication and cryptography
- Scalable quantum-classical interfaces
- Quantum simulation methodologies
- Post-CMOS and emerging quantum devices
- Applications in optimization, sensing, and complex modeling

















