English

Programmable XY-type couplings through parallel spin-dependent forces on the same trapped ion motional modes

Quantum Physics 2024-05-24 v2 Other Condensed Matter Soft Condensed Matter Superconductivity Atomic Physics

Abstract

We propose and experimentally demonstrate an analog scheme for generating XY-type (Jijxσxiσxj  J_{ij}^x \sigma_x^i \sigma_x^j \; + Jijyσyiσyj  J_{ij}^y \sigma_y^i \sigma_y^j \;) Hamiltonians on trapped ion spins with independent control over the JijxJ_{ij}^x and JijyJ_{ij}^y terms. The Ising-type interactions σxiσxj  \sigma_x^i \sigma_x^j \; and σyiσyj  \sigma_y^i \sigma_y^j \; are simultaneously generated by employing two spin-dependent forces operating in parallel on the same set of normal modes. We analytically calculate the region of validity of this scheme, and provide numerical and experimental validation with 171Yb+  ^{171}\rm{Yb}^+\; ions. This scheme inherits the programmability and scalability of the Ising-type interactions with trapped ions that have been explored in numerous quantum simulation experiments. Our approach extends the capabilities of existing trapped ion quantum simulators to access a large class of spin Hamiltonians relevant for exploring exotic quantum phases such as superfluidity and spin liquids.

Cite

@article{arxiv.2307.04922,
  title  = {Programmable XY-type couplings through parallel spin-dependent forces on the same trapped ion motional modes},
  author = {Nikhil Kotibhaskar and Chung-You Shih and Sainath Motlakunta and Anthony Vogliano and Lewis Hahn and Yu-Ting Chen and Rajibul Islam},
  journal= {arXiv preprint arXiv:2307.04922},
  year   = {2024}
}
R2 v1 2026-06-28T11:26:34.960Z