Geometric frustration produces long-sought Bose metal phase of quantum matter
Abstract
Two of the most prominent phases of bosonic matter are the superfluid with perfect flow and the insulator with no flow. A now decades-old mystery unexpectedly arose when experimental observations indicated that bosons could organize into the formation of an entirely different intervening third phase: the Bose metal with dissipative flow. The most viable theory for such a Bose metal to date invokes the use of the extrinsic property of impurity-based disorder; however, a generic intrinsic quantum Bose metal state is still lacking. We propose a universal homogeneous theory for a Bose metal in which geometric frustration confines the essential quantum coherence to a lower dimension. The result is a gapless insulator characterized by dissipative flow that vanishes in the low-energy limit. This failed insulator exemplifies a frustration-dominated regime that is only enhanced by additional scattering sources at low energy and therefore produces a Bose metal that thrives under realistic experimental conditions.
Keywords
Cite
@article{arxiv.2101.06264,
title = {Geometric frustration produces long-sought Bose metal phase of quantum matter},
author = {Anthony Hegg and Jinning Hou and Wei Ku},
journal= {arXiv preprint arXiv:2101.06264},
year = {2021}
}
Comments
19 pages, 5 figures, supplementary material included