Phase transitions in a three dimensional $U(1) \times U(1)$ lattice London superconductor: Metallic superfluid and charge-4e superconducting states
Egil V. Herland, Egor Babaev, and Asle Sudbo

TL;DR
This paper explores the complex phase diagram of a three-dimensional $U(1) imes U(1)$ lattice superconductor, revealing novel metallic superfluid and charge-4e superconducting states through the study of topological defects and phase transitions.
Contribution
It introduces a detailed analysis of phase transitions and competing phases in multicomponent $U(1) imes U(1)$ superconductors, including the concept of preemptive phase transitions and vortex interactions.
Findings
Identification of metallic superfluid phase with order in gauge-invariant phase difference
Discovery of a composite charge-4e superconducting phase with doubled electric charge
Observation of merger of two $U(1)$ transitions into a single discontinuous transition
Abstract
We consider a three-dimensional lattice and superconductors in the London limit, with individually conserved condensates. The problem, generically, has two types of intercomponent interactions of different characters. First, the condensates are interacting via a minimal coupling to the same fluctuating gauge field. A second type of coupling is the direct dissipationless drag represented by a local intercomponent current-current coupling term in the free energy functional. In this work, we present a study of the phase diagram of a superconductor which includes both of these interactions. We study phase transitions and two types of competing paired phases which occur in this general model: (i) a metallic superfluid phase (where there is order only in the gauge invariant phase difference of the order parameters), (ii) a…
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