Quantum Algorithm Cards: Streamlining the development of hybrid classical-quantum applications
arXiv:2310.02598 · doi:10.1007/978-3-031-49269-3_13
Abstract
The emergence of quantum computing proposes a revolutionary paradigm that can radically transform numerous scientific and industrial application domains. The ability of quantum computers to scale computations implies better performance and efficiency for certain algorithmic tasks than current computers provide. However, to gain benefit from such improvement, quantum computers must be integrated with existing software systems, a process that is not straightforward. In this paper, we investigate challenges that emerge when building larger hybrid classical-quantum computers and introduce the Quantum Algorithm Card (QAC) concept, an approach that could be employed to facilitate the decision making process around quantum technology.
References in corpus (4)
- Towards a Distributed Quantum Computing Ecosystem
- Qiskit Pulse: Programming Quantum Computers Through the Cloud with Pulses
- Quantum Software Engineering Challenges from Developers' Perspective: Mapping Research Challenges to the Proposed Workflow Model
- Full-Stack Quantum Software in Practice: Ecosystem, Stakeholders and Challenges