4.6 Article

Floquet band engineering with Bloch oscillations

期刊

PHYSICAL REVIEW B
卷 106, 期 22, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.106.224309

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资金

  1. National Natural Science Foundation of China [12275260, 11905211]
  2. Young Talents Project at Ocean University of China [861801013196]
  3. Applied Research Project of Postdoctoral Fellows in Qingdao [861905040009]
  4. Singapore National Research Foundation [NRF-NRFI2017-04, A-0004162-00-00]

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This work demonstrates the engineering of Floquet bands through Bloch oscillations by adding a tilted linear potential to periodically driven lattice systems. The band structure and topology can be extensively tuned by adjusting the ratio of competing frequencies.
This work provides a convenient and powerful means towards the engineering of Floquet bands via Bloch oscillations, by adding a tilted linear potential to periodically driven lattice systems. The added linear field not only restricts the spreading of a time-evolving wave packet but also, depending on the ratio between the Bloch oscillation frequency and the modulation frequency of the periodic driving, dramatically modifies the band profile and topology. Specifically, we consider a driven Aubry-Andre-Harper model as a working example, in the presence of a linear field. Almost fiat Floquet bands or Floquet bands with large Chern numbers due to the interplay between the periodic driving and Bloch oscillations can be obtained, with the band structure and topology extensively tunable by adjusting the ratio of two competing frequencies. To confirm our finding, we further execute the Thouless pumping of one and two interacting bosons in such a lattice system and establish its connection with the topological properties of single-and two-particle Floquet bands.

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