Two types of long-range interactions, dipolar interaction and cavity-mediated interaction, lead to exotic quantum phases. Both interactions were realized and observed in optical lattice setups. Here, we study quantum phases of dipolar bosons trapped in optical lattices and coupled to a high-finesse cavity where both dipolar interaction and cavity-mediated interaction coexist. We perform quantum Monte Carlo simulations and find that the checkerboard solid is enhanced and the checkerboard supersolid phase can exist in a wide range of densities (e.g., 0.27≲n≲0.73). Our unbiased numerical results suggest that both solid and supersolid phases can be achieved experimentally with magnetic atoms coupled to a cavity.
Quantum phases of lattice dipolar bosons coupled to a high-finesse cavity / Hebib, Y.; Zhang, Chao.; Yang, Jin.; Capogrosso Sansone, B.. - In: PHYSICAL REVIEW A. - ISSN 2469-9926. - 107:(2023), pp. 1-7. [10.1103/PhysRevA.107.043318]
Quantum phases of lattice dipolar bosons coupled to a high-finesse cavity
Capogrosso Sansone B.
2023
Abstract
Two types of long-range interactions, dipolar interaction and cavity-mediated interaction, lead to exotic quantum phases. Both interactions were realized and observed in optical lattice setups. Here, we study quantum phases of dipolar bosons trapped in optical lattices and coupled to a high-finesse cavity where both dipolar interaction and cavity-mediated interaction coexist. We perform quantum Monte Carlo simulations and find that the checkerboard solid is enhanced and the checkerboard supersolid phase can exist in a wide range of densities (e.g., 0.27≲n≲0.73). Our unbiased numerical results suggest that both solid and supersolid phases can be achieved experimentally with magnetic atoms coupled to a cavity.| File | Dimensione | Formato | |
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PhysRevA.107.pdf
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https://hdl.handle.net/11583/3008233
