English

Floquet-engineered system-reservoir interaction in the transverse field Ising model

Quantum Physics 2025-09-05 v3

Abstract

Periodically driving a quantum many-body system can drastically change its properties, leading to exotic non-equilibrium states of matter without a static analog. In this scenario, parametric resonances and the complexity of an interacting many-body system are pivotal in establishing non-equilibrium states. We report on a Floquet-engineered transverse field Ising model for the controlled propagation in one dimension of spin waves. The underlying mechanisms behind our proposal rely on high-frequency drivings using characteristic parametric resonances of the spin lattice. Many-body resonances modulating spin-spin exchange or individual spin gaps inhibit interactions between spins thus proving a mechanism for controlling spin-wave propagation and a quantum switch. Our schemes may be implemented in circuit QED with direct applications in coupling-decoupling schemes for system-reservoir interaction and routing in quantum networks.

Keywords

Cite

@article{arxiv.2501.07527,
  title  = {Floquet-engineered system-reservoir interaction in the transverse field Ising model},
  author = {Maritza Ahumada and Natalia Valderrama-Quinteros and Guillermo Romero},
  journal= {arXiv preprint arXiv:2501.07527},
  year   = {2025}
}

Comments

11 pages, 15 Figures, 54 references

R2 v1 2026-06-28T21:04:57.911Z