Observation of Pines' Demon in Sr$_2$RuO$_4$
Abstract
The characteristic excitation of a metal is its plasmon, which is a quantized collective oscillation of its electron density. In 1956, David Pines predicted that a distinct type of plasmon, dubbed a "demon," could exist in three-dimensional metals containing more than one species of charge carrier. Consisting of out-of-phase movement of electrons in different bands, demons are acoustic, electrically neutral, and do not couple to light, so have never been detected in an equilibrium, three-dimensional metal. Nevertheless, demons are believed to be critical for diverse phenomena including phase transitions in mixed-valence semimetals, optical properties of metal nanoparticles, "soundarons" in Weyl semimetals, and high temperature superconductivity in, for example, metal hydrides. Here, we present evidence for a demon in SrRuO from momentum-resolved electron energy-loss spectroscopy (M-EELS). Formed of electrons in the and bands, the demon is gapless with a room temperature velocity m/s and critical momentum reciprocal lattice units. Its spectral weight violates low-energy partial sum rules, affirming its neutral character. Our study confirms a 66-year old prediction and suggests that demons may be a pervasive feature of multiband metals.
Cite
@article{arxiv.2007.06670,
title = {Observation of Pines' Demon in Sr$_2$RuO$_4$},
author = {A. A. Husain and E. W. Huang and M. Mitrano and M. S. Rak and S. I. Rubeck and X. Guo and H. Yang and C. Sow and Y. Maeno and B. Uchoa and T. C. Chiang and P. E. Batson and P. W. Phillips and P. Abbamonte},
journal= {arXiv preprint arXiv:2007.06670},
year = {2022}
}
Comments
14 pages, 4 figures ; Revised to include a complete analysis of the gapless collective mode