We briefly review the research on second sound in ultracold atomic physics, with emphasis on strongly interacting unitary Fermi gases with infinitely large s-wave scattering length …
Understanding how strongly correlated two-dimensional (2D) systems can give rise to unconventional superconductivity with high critical temperatures is one of the major …
We theoretically investigate the superfluid–normal-state Berezinskii-Kosterlitz-Thouless transition in a binary mixture of bosonic atoms with Rabi coupling under balanced densities …
K Gawryluk, M Brewczyk - Scientific Reports, 2024 - nature.com
We numerically study the transport properties of a two-dimensional Fermi gas in a weakly and strongly interacting regimes, in the range of temperatures close to the transition to a …
We compare recent experimental results [Science 375, 528 (2022) 0036-8075 10.1126/science. abi4480] of the superfluid unitary Fermi gas near the critical temperature …
We investigate the electron-hole two-stream instability (or Coulomb drag) in bilayer graphene in the hydrodynamic regime, accounting for the effects of temperature, initial drift …
VP Singh, L Mathey - New Journal of Physics, 2022 - iopscience.iop.org
We study the propagation of the two sound modes in two-dimensional Bose gases across the Berezinksii–Kosterlitz–Thouless transition using classical-field dynamics, which is …
We review our theoretical results of the sound propagation in two-dimensional (2D) systems of ultracold fermionic and bosonic atoms. In the superfluid phase, characterized by the …
Multicomponent superfluidity exhibits fruitful physics in contrast to single-component superfluids. In a binary superfluid with two different hyperfine states, the vorticity is modified …