On Double Full-Stack Communication-Enabled Architectures for Multicore Quantum Computers
Santiago Rodrigo (Universitat Politecnica de Catalunya)
Sergi Abadal (Universitat Politecnica de Catalunya)
Eduard Alarcon (Universitat Politecnica de Catalunya)
Medina Bandic (QCD/Sebastiano Lab, TU Delft - QuTech Advanced Research Centre, TU Delft - QCD/Almudever Lab)
J. Van Someren (TU Delft - QCD/Vandersypen Lab, TU Delft - QuTech Advanced Research Centre)
C.G. Garcia Almudever (TU Delft - QCD/Almudever Lab, TU Delft - QuTech Advanced Research Centre, QCD/Sebastiano Lab)
More Info
expand_more
Abstract
Despite its tremendous potential, it is still unclear how quantum computing will scale to satisfy the requirements of its most powerful applications. Among other issues, there are hard limits to the number of qubits that can be integrated into a single chip. Multicore architectures are a firm candidate for unlocking the scalability of quantum processors. Nonetheless, the vulnerability and complexity of quantum communications make this a challenging approach. A comprehensive design should imply consolidating the communications stack in the quantum computer architecture. In this article, we explain how this vision, by entangling communications and computation in the core of the design, may help to solve the open challenges. We also summarize the first results of our application of structured design methodologies backing this vision. With our work, we hope to contribute with design guidelines that may help unleash the potential of quantum computing.
No files available
Metadata only record. There are no files for this record.