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Pines’ demon observed as a 3D acoustic plasmon in Sr
2
RuO
4
Ali A. Husain
, Edwin W. Huang
, Matteo Mitrano
, Melinda S. Rak
, Samantha I. Rubeck
, Xuefei Guo
, Hongbin Yang
, Chanchal Sow
, Yoshiteru Maeno
, Bruno Uchoa
, Tai C. Chiang
, Philip E. Batson
,
Philip W. Phillips
,
Peter Abbamonte
Physics
Chemistry
Materials Research Laboratory
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
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Dive into the research topics of 'Pines’ demon observed as a 3D acoustic plasmon in Sr
2
RuO
4
'. Together they form a unique fingerprint.
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Keyphrases
Acoustic Plasmon
100%
Acoustics
12%
Collective Oscillation
12%
Detection of Envelope Modulation on Noise (DEMON)
100%
Electron Density
12%
Electron Energy Loss Spectroscopy
12%
Gapless
12%
Hermann Weyl
12%
High-temperature Superconductivity
12%
Metal-containing
12%
Mixed Valence
12%
Momentum Dependence
12%
Optical Properties
12%
Phase Transition
12%
Plasmon
25%
Reciprocal Lattice
12%
Renormalization
12%
Room Temperature
12%
Strontium Ruthenate
100%
Three-dimensional (3D)
100%
Physics
Acoustics
100%
Electron Density
33%
Electron Energy
33%
High Temperature Superconductivity
33%
Optical Property
33%
Plasmon
100%
Room Temperature
33%
Material Science
Acoustics
100%
Carrier Concentration
50%
Electron Energy Loss Spectrometry
50%
High-Temperature Superconductivity
50%
Optical Property
50%
Chemistry
Ambient Reaction Temperature
33%
Electron Density
33%
Electron Energy Loss Spectroscopy
33%
Mixed Valence
33%
Optical Property
33%
Plasmon
100%
Superconductivity
33%