4.8 Article

Giant Atoms in a Synthetic Frequency Dimension

Journal

PHYSICAL REVIEW LETTERS
Volume 128, Issue 22, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.128.223602

Keywords

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Funding

  1. National Natural Science Foundation of China [12074030, U1930402]
  2. Swedish Research Council [2019-03696]
  3. Knut and Alice Wallenberg Foundation through the Wallenberg Centre for Quantum Technology (WACQT)
  4. Ministry of Science and Technology of People's Republic of China [2021YFE0193500]
  5. Vinnova [2019-03696] Funding Source: Vinnova
  6. Swedish Research Council [2019-03696] Funding Source: Swedish Research Council

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This article proposes a scheme for constructing giant atoms in a synthetic frequency dimension and compares it with real-space giant atoms. The results show that chiral interactions between the atom and the frequency lattice can be achieved by tuning the phase of the external field.
Giant atoms that interact with real-space waveguides at multiple spatial points have attracted extensive attention due to their unique interference effects. Here we propose a feasible scheme for constructing giant atoms in a synthetic frequency dimension with, e.g., a dynamically modulated superconducting resonator and a tailored three-level artificial atom. Both analytical and numerical calculations show good agreement between our scheme and real-space two-level giant atoms. In particular, the symmetry of the model in momentum space can be broken by tuning the phase of the external field applied on the atom, enabling chiral interactions between the atom and the frequency lattice. We further demonstrate the possibility of simulating cascaded interaction and directional excitation transfer in the frequency dimension by directly extending our model to involve more such effective giant atoms.

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