English

Generalised Quantum Gates for Qudits and their Application in Quantum Fourier Transform

Quantum Physics 2024-10-10 v2 Quantum Algebra

Abstract

Quantum computing with qudits, quantum systems with d>2d > 2 levels, offers a powerful extension beyond qubits, expanding the computational possibilities of quantum systems, allowing the simplification of the implementation of several algorithms and, possibly, providing a foundation for optimised error correction. In this work, we propose a novel formulation of qudit gates that is universally applicable for any number of levels dd, without restrictions on the dimensionality. By extending the mathematical framework of quantum gates to arbitrary dimensions, we derive explicit gate operations that form a universal set for quantum computation on qudits of any size. We demonstrate the validity of our approach through the implementation of the Quantum Fourier Transform (QFT) for arbitrary dd, verifying both the correctness and utility of our generalized gates. This novel methodology broadens the design space for quantum algorithms and fault-tolerant architectures, paving the way for advancements in qudit-based quantum computing.

Keywords

Cite

@article{arxiv.2410.05122,
  title  = {Generalised Quantum Gates for Qudits and their Application in Quantum Fourier Transform},
  author = {Francesco Pudda and Mario Chizzini and Luca Crippa},
  journal= {arXiv preprint arXiv:2410.05122},
  year   = {2024}
}