English

Qompress: Efficient Compilation for Ququarts Exploiting Partial and Mixed Radix Operations for Communication Reduction

Quantum Physics 2023-03-03 v2 Hardware Architecture Emerging Technologies

Abstract

Quantum computing is in an era of limited resources. Current hardware lacks high fidelity gates, long coherence times, and the number of computational units required to perform meaningful computation. Contemporary quantum devices typically use a binary system, where each qubit exists in a superposition of the 0\ket{0} and 1\ket{1} states. However, it is often possible to access the 2\ket{2} or even 3\ket{3} states in the same physical unit by manipulating the system in different ways. In this work, we consider automatically encoding two qubits into one four-state qu\emph{quart} via a \emph{compression scheme}. We use quantum optimal control to design efficient proof-of-concept gates that fully replicate standard qubit computation on these encoded qubits. We extend qubit compilation schemes to efficiently route qubits on an arbitrary mixed-radix system consisting of both qubits and ququarts, reducing communication and minimizing excess circuit execution time introduced by longer-duration ququart gates. In conjunction with these compilation strategies, we introduce several methods to find beneficial compressions, reducing circuit error due to computation and communication by up to 50\%. These methods can increase the computational space available on a limited near-term machine by up to 2x while maintaining circuit fidelity.

Keywords

Cite

@article{arxiv.2303.00658,
  title  = {Qompress: Efficient Compilation for Ququarts Exploiting Partial and Mixed Radix Operations for Communication Reduction},
  author = {Andrew Litteken and Lennart Maximilian Seifert and Jason Chadwick and Natalia Nottingham and Fredric T. Chong and Jonathan M. Baker},
  journal= {arXiv preprint arXiv:2303.00658},
  year   = {2023}
}

Comments

14 pages, 13 figures, 1 table, to be published at ASPLOS 2023

R2 v1 2026-06-28T08:54:45.061Z