Información de la conferencia
QSW 2025: IEEE International Conference on Quantum Software
https://qsw.conferences.computer.org/2024/
Día de Entrega:
2025-03-10 Extended
Fecha de Notificación:
2025-05-06
Fecha de Conferencia:
2025-07-07
Ubicación:
Helsinki, Finland
Años:
4
Vistas: 8342   Seguidores: 1   Asistentes: 0

Solicitud de Artículos
All topics relevant to Quantum Software are of interest including, but not limited to the following:

Quantum Software Development

    Development Process for Quantum Applications
    Lifecycle Models for Quantum Applications
    Data Preparation Techniques
    Error Mitigation Techniques
    Quantum Software Languages, Code Generators, Compilers, and Simulators 
    Best Practices and Patterns for Quantum Applications 

Quantum Software Verification, Validation, and Evolution

    Testing of Quantum Applications
    Quantum Software Analysis and Mining
    KPIs and Quality Metrics for Quantum Applications
    Evolution and Re-engineering of Quantum Applications
    Quantum Software Visualization and Comprehension
    Quantum Software Maintenance, Repair, and Improvement
    Quantum Software Performance and Benchmarking

Quantum Software Applications

    Migration from Proof-of-Concept Quantum Applications to Production
    Scalability of Quantum Applications (e.g., sensitivity of increasing qubits, gate fidelity)
    Migration between different Quantum Technologies
    Software-perspective Experience Reports of Applying Quantum Technologies
    Quantum Machine Learning

Quantum in the Cloud

    Quantum Computing as a Service
    Interoperability and Portability of Quantum Software
    Deployment Automation of Quantum Software
    Cloud-based Quantum Software Development Environments
    Hybrid Quantum Software
    Architectural Styles of Hybrid Quantum-Classical Applications
    Integration and Orchestration of Quantum/Classical Components 
    Specification & Verification of Functional/Non-functional Requirements of Hybrid Applications

High Performance Computing with Quantum Computers

    Impact of Hybrid Quantum-Classical workflows on HPC architectures
    HPC architectures for leveraging Hybrid Quantum-Classical workflows
    Lifecycle of HPC Quantum-Classical Hybrid Applications 

AI-Assisted Quantum Development

    AI-Based Circuit Optimization and Synthesis
    AI-Assisted Error Mitigation Techniques
    AI-Powered Execution of Quantum Circuits
    Limits of AI-Powered Simulation of Quantum Computers
    AI-Driven Unitary Synthesis

Quantum Internet

    Entanglement Distribution Schemes
    Quantum Network Simulation and Emulation
    Quantum Internet Applications
    Quantum Software for Networking
Última Actualización Por Dou Sun en 2025-03-01
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