The evolving landscape of quantum computing at its early stages presents challenges in predicting which from among many different quantum architectures will become dominant. This uncertainty and diversity has led to the proliferation of various software solutions, resulting in complexity for developers and researchers experimenting with different quantum paradigms. Existing tools attempt to address these challenges, yet they often fall short of meeting the needs of current researchers seeking simplicity in software while retaining access to specific quantum hardware details. In this paper, we introduce QCG-QuantumLauncher, a software library designed to solve specific problems by launching selected quantum algorithms on chosen quantum devices through a simple, uniform interface. Additionally, we delineate the future development trajectories of QCG-QuantumLauncher, aiming to position it as the premier tool choice for any quantum researcher.

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QCG-QuantumLauncher: A Modular Tool for Quantum Scenarios

  • Tomasz Pecyna,
  • Dawid Siera,
  • Bartosz Bosak

摘要

The evolving landscape of quantum computing at its early stages presents challenges in predicting which from among many different quantum architectures will become dominant. This uncertainty and diversity has led to the proliferation of various software solutions, resulting in complexity for developers and researchers experimenting with different quantum paradigms. Existing tools attempt to address these challenges, yet they often fall short of meeting the needs of current researchers seeking simplicity in software while retaining access to specific quantum hardware details. In this paper, we introduce QCG-QuantumLauncher, a software library designed to solve specific problems by launching selected quantum algorithms on chosen quantum devices through a simple, uniform interface. Additionally, we delineate the future development trajectories of QCG-QuantumLauncher, aiming to position it as the premier tool choice for any quantum researcher.