English

Continuous quantum gate sets and pulse class meta-optimization

Quantum Physics 2022-12-15 v3

Abstract

Reducing the circuit depth of quantum circuits is a crucial bottleneck to enabling quantum technology. This depth is inversely proportional to the number of available quantum gates that have been synthesised. Moreover, quantum gate synthesis and control problems exhibit a vast range of external parameter dependencies, both physical and application-specific. In this article we address the possibility of learning families of optimal control pulses which depend adaptively on various parameters, in order to obtain a global optimal mapping from the space of potential parameter values to the control space, and hence continuous classes of gates. Our proposed method is tested on different experimentally relevant quantum gates and proves capable of producing high-fidelity pulses even in presence of multiple variable or uncertain parameters with wide ranges.

Keywords

Cite

@article{arxiv.2203.13594,
  title  = {Continuous quantum gate sets and pulse class meta-optimization},
  author = {Francesco Preti and Tommaso Calarco and Felix Motzoi},
  journal= {arXiv preprint arXiv:2203.13594},
  year   = {2022}
}

Comments

20 pages, 9 figures, published on PRX Quantum on the 25th of October 2022