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Characteristic power spectrum of diffusive interface dynamics in the two-dimensional Ising model
Yusuke Masumoto1, Shinji Takesue1
1Department of Physics, Kyoto University, Kyoto 6068502, Japan.
Physical Review. E
|June 17, 2018
Summary
We studied interface motion in the two-dimensional Ising model. The interface diffuses with a drift toward higher temperatures when heat transfers through the system.
Area of Science:
- Statistical mechanics
- Condensed matter physics
Background:
- The diffusive motion of interfaces is crucial in understanding phase transitions.
- Previous studies clarified this in 1D systems, like the asymmetric simple exclusion process.
Purpose of the Study:
- To investigate interface motion properties in the 2D Ising model under equilibrium and nonequilibrium conditions.
- To explore the relationship between spin time series power spectrum and interface diffusion.
Main Methods:
- Analysis of the two-dimensional Ising model.
- Examination of spin time series and their power spectrum.
- Investigation of diffusive motion and interface width effects.
Main Results:
- Interface motion is a diffusion process with a drift force.
- The drift is directed towards the higher-temperature side when heat transfers through the system.
- The influence of interface width on its motion was analyzed.
Conclusions:
- The study clarifies the diffusive behavior of interfaces in the 2D Ising model.
- It establishes a connection between spin dynamics and macroscopic interface movement.
- Findings are relevant for systems with thermal gradients and phase transitions.
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