English

Anomalous density fluctuations in a strange metal

Strongly Correlated Electrons 2018-05-15 v3 Materials Science Superconductivity

Abstract

A central mystery in high temperature superconductivity is the origin of the so-called "strange metal," i.e., the anomalous conductor from which superconductivity emerges at low temperature. Measuring the dynamic charge response of the copper-oxides, χ(q,ω)\chi''(q,\omega), would directly reveal the collective properties of the strange metal, but it has never been possible to measure this quantity with meV resolution. Here, we present the first measurement of χ(q,ω)\chi''(q,\omega) for a cuprate, optimally doped Bi2_2Sr2_2CaCu2_2O8+x_{8+x} (Tc=91T_c=91 K), using momentum-resolved inelastic electron scattering. In the medium energy range 0.1-2 eV relevant to the strange metal, the spectra are dominated by a featureless, temperature- and momentum-independent continuum persisting to the eV energy scale. This continuum displays a simple power law form, exhibiting q2q^2 behavior at low energy and q2/ω2q^2/\omega^2 behavior at high energy. Measurements of an overdoped crystal (Tc=50T_c=50 K) showed the emergence of a gap-like feature at low temperature, indicating deviation from power law form outside the strange metal regime. Our study suggests the strange metal exhibits a new type of charge dynamics in which excitations are local to such a degree that space and time axes are decoupled.

Keywords

Cite

@article{arxiv.1708.01929,
  title  = {Anomalous density fluctuations in a strange metal},
  author = {M. Mitrano and A. A. Husain and S. Vig and A. Kogar and M. S. Rak and S. I. Rubeck and J. Schmalian and B. Uchoa and J. Schneeloch and R. Zhong and G. D. Gu and P. Abbamonte},
  journal= {arXiv preprint arXiv:1708.01929},
  year   = {2018}
}

Comments

21 pages, 8 figures

R2 v1 2026-06-22T21:08:04.630Z