English

Universal Control in Bosonic Systems with Weak Kerr Nonlinearities

Quantum Physics 2025-04-14 v1

Abstract

Resonators with weak single-photon self-Kerr nonlinearities can theoretically be used to prepare Fock states in the presence of a loss much larger than their nonlinearities. Two necessary ingredients are large displacements and a two-photon (parametric) drive. Here, we find that these systems can be controlled to achieve any desired gate operation in a finite dimensional subspace (whose dimensionality can be chosen at will). Moreover, we show that the two-photon driving requirement can be relaxed and that full controllability is achievable with only 1-photon (linear) drives. We make use of both Trotter-Suzuki decompositions and gradient-based optimization to find control pulses for a desired gate, which reduces the computational overhead by using a small blockaded subspace. We also discuss the infidelity arising from input power limitations in realistic settings, as well as from corrections to the rotating-wave approximation. Our universal control protocol opens the possibility for quantum information processing using a wide range of lossy systems with weak nonlinearities.

Keywords

Cite

@article{arxiv.2312.15783,
  title  = {Universal Control in Bosonic Systems with Weak Kerr Nonlinearities},
  author = {Ming Yuan and Alireza Seif and Andrew Lingenfelter and David I. Schuster and Aashish A. Clerk and Liang Jiang},
  journal= {arXiv preprint arXiv:2312.15783},
  year   = {2025}
}

Comments

7 pages of main text with 3 figures. 15 pages of supplemental material with 4 figures

R2 v1 2026-06-28T14:01:39.634Z