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Temperature evolution of the phonon dynamics in the Kitaev spin liquid
Kexin Feng
, Mengxing Ye
,
Natalia B. Perkins
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
18
Scopus citations
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Keyphrases
Temperature Evolution
100%
Kitaev Spin Liquids
100%
Phonon Dynamics
100%
Majorana Fermions
75%
Fractionalized Excitation
50%
Finite Temperature
50%
Hall Viscosity
50%
Low Temperature
25%
Monte Carlo Method
25%
High Temperature
25%
Low Energy
25%
Attenuation Coefficient
25%
Phonons
25%
Spin Models
25%
Time-reversal Symmetry Breaking
25%
Itinerant
25%
Thermal Excitation
25%
Leading Order
25%
Relative Magnitude
25%
Angular Dependence
25%
Acoustic Phonons
25%
Ordering Time
25%
Intermediate Temperature
25%
Numerical Calculation
25%
Spin Excitations
25%
Zero Flux
25%
Thermodynamic Behavior
25%
Fermi Velocity
25%
Sound Velocity
25%
Sound Attenuation
25%
Analytical Calculation
25%
Symmetry Breaking Effect
25%
Phonon Decay
25%
Engineering
Fluid Viscosity
100%
Low-Temperature
50%
Thermal Excitation
50%
Numerical Calculation
50%
Leading Order
50%
Angular Dependence
50%
Intermediate Temperature
50%
Relative Magnitude
50%
Acoustic Phonon
50%
Sound Attenuation
50%
Sound Velocity
50%
Thermodynamic Behavior
50%
Physics
Phonon
100%
Fermion
42%
Finite-Temperature
28%
Zero-Temperature
14%
Broken Symmetry
14%
Acoustic Velocity
14%
Monte Carlo Method
14%
Attenuation Coefficient
14%
Chemistry
Phonons
100%
Finite-Temperature
33%
Monte Carlo Method
16%
Zero-Temperature
16%
Velocity of Sound
16%
Acoustic Phonon
16%
Material Science
Density
100%