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Proposal for a multi-technology, template-based quantum circuits compilation toolchain.
Rel. Maurizio Zamboni, Mariagrazia Graziano, Giovanna Turvani. Politecnico di Torino, Master of science program in Electronic Engineering, 2021
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Abstract
The promising branch of quantum computing has made some significant advances in the last decade. With quantum hardware becoming larger in scale and more reliable, quantum circuits are growing in size and becoming more complex in their implementations. In order to face the challenge of achieving optimality for these circuits, the state-of-the-art in quantum computing has employed automated design tools for improving and mapping quantum circuits, each one characterized by a specific optimization strategy. In this thesis, the use of a template-based approach for quantum circuits optimization purposes is explored, and the proposal of a modular compilation toolchain – which supports multiple trending quantum implementation technologies - is presented.
The Toolchain, which is inspired by the current state-of-the-art design workflow, is entirely developed in Python and designed to optimize quantum circuits described in the OpenQASM intermediate description language
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