Kumar Abhishek, Ortiz Gerardo, Richerme Philip, Seradjeh Babak
Department of Physics, Indiana University, Bloomington, Indiana 47405, USA.
Quantum Science and Engineering Center, Indiana University, Bloomington, Indiana 47405, USA.
Phys Rev Lett. 2021 May 21;126(20):206602. doi: 10.1103/PhysRevLett.126.206602.
We introduce the concept of a Floquet gauge pump whereby a dynamically engineered Floquet Hamiltonian is employed to reveal the inherent degeneracy of the ground state in interacting systems. We demonstrate this concept in a one-dimensional XY model with periodically driven couplings and transverse field. In the high-frequency limit, we obtain the Floquet Hamiltonian consisting of the static XY and dynamically generated Dzyaloshinsky-Moriya interaction (DMI) terms. The dynamically generated magnetization current depends on the phases of complex coupling terms, with the XY interaction as the real and DMI as the imaginary part. As these phases are cycled, the current reveals the ground-state degeneracies that distinguish the ordered and disordered phases. We discuss experimental requirements needed to realize the Floquet gauge pump in a synthetic quantum spin system of interacting trapped ions.
我们引入了弗洛凯规范泵的概念,即利用动态设计的弗洛凯哈密顿量来揭示相互作用系统中基态的固有简并性。我们在具有周期性驱动耦合和横向场的一维XY模型中演示了这一概念。在高频极限下,我们得到了由静态XY项和动态产生的Dzyaloshinsky-Moriya相互作用(DMI)项组成的弗洛凯哈密顿量。动态产生的磁化电流取决于复耦合项的相位,其中XY相互作用为实部,DMI为虚部。随着这些相位的循环,电流揭示了区分有序相和无序相的基态简并性。我们讨论了在相互作用的捕获离子的合成量子自旋系统中实现弗洛凯规范泵所需的实验条件。