arXiv · 2304.03309
Superfluid Edge Dislocation: Transverse Quantum Fluid
Abstract
Recently, it has been argued by Kuklov et al., that unusual features associated with the superflow-through-solid effect observed in solid He4 can be explained by unique properties of dilute distribution of superfluid edge dislocations. We demonstrate that stability of supercurrents controlled by quantum phase slips (instantons), and other exotic infrared properties of the superfluid dislocations readily follow from a one-dimensional quantum liquid distinguished by an effectively infinite compressibility (in the absence of Peierls potential) associated with the edge dislocation's ability to climb. This establishes a new class of quasi-one-dimensional superfluid states that remain stable and long-range ordered despite their low dimensionality. We propose an experiment to test our mass-current--pressure characteristic prediction.
Explore related subjects
Keep this discovery
Leo Radzihovsky, Anatoly Kuklov, Nikolay Prokof'ev, Boris Svistunov. 2023-04-06. Superfluid Edge Dislocation: Transverse Quantum Fluid. https://arxiv.org/abs/2304.03309
Cite the original work for its findings. Save a collection to share your selection of sources.