Borromean Criticality in Two Dimensions
Alexandru Golic, Igor Timoshuk, Albert Samoilenka, Egor Babaev, Boris Svistunov
Abstract
The characteristic feature of counterflow superfluids consisting of N≥ 3 components -- the so-called Borromean supercounterfluids (BSCF) -- is the presence of N distinct elementary topological excitations (vortices) despite having only N-1 independent Goldstone modes. We show that this remarkable property clearly manifests itself at the Berezinskii-Kosterlitz-Thouless-type transition from the BSCF to the normal state, under the conditions of slight to moderate deviations from the case of exact intercomponent symmetry. More generally, our analysis also applies to any multicomponent superfluid with intercomponent drag fine-tuned to the value when certain composite vortices compete energetically with elementary ones.
Create a lesson
Related papers
Cavity-induced intertwining of density and pairing order in a degenerate Fermi gas
Sankalp Sharma, Farokh Mivehvar, Helmut Ritsch et al.
Geometry-Driven Suppression of Fermionic Pairing on a Spherical Surface
Lorenzo Frigato, Andrea Tononi, Luca Salasnich
Course on two-dimensional quantum gases
Hélène Perrin
Stable three-dimensional lattice solitons in spin-orbit-coupled Bose-Einstein condensates
Liangwei Zeng, Boris A. Malomed, Yaroslav V. Kartashov et al.
Weak ferromagnetism in the square-lattice Heisenberg J1-J2-J2 model with easy-axis single-ion anisotropy
Bin-Zhou Mi, Qiang Gu
Few-body bound states in the anyon-Hubbard model
Isaac Tesfaye, Christina Mascherbauer, Joyce Kwan et al.