arXiv · 2110.02434
Manipulating Goldstone modes via the superradiant light in a bosonic lattice gas inside a cavity
Abstract
We study the low-energy excitations of a bosonic lattice gas with cavity-mediated interactions. By performing two successive Hubbard-Stratonovich transformations, we derive an effective field theory to study the strongly-coupling regime. Taking into account the quantum fluctuation, we report the unusual effect of the superradiant cavity light induced density imbalance, which has been shown to have a negligible effect on the single particle excitation in the previous studies. Instead, we show that such negligible fluctuation of density imbalance dramatically changes the behavior of the low-energy excitation and results in a free switching between two types of Goldstone modes in its single particle excitation, i.e., type I and type II with odd and even power energy-momentum dispersion, respectively. Our proposal would open a new horizon for manipulating Goldstone modes from bridging the cavity light and strongly interacting quantum matters.
Explore related subjects
Keep this discovery
Huan Wang, Shuai Li, Maksims Arzamasovs, W. Vincent Liu, Bo Liu. 2021-10-06. Manipulating Goldstone modes via the superradiant light in a bosonic lattice gas inside a cavity. https://doi.org/10.1103/physreva.105.063301
Cite the original work for its findings. Save a collection to share your selection of sources.