Phenomenological theory of a renormalized simplified model based on time-convolutionless mode-coupling theory near the glass transition
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Publication:1620095
DOI10.1016/j.physa.2016.08.011zbMath1400.82295OpenAlexW2511471850MaRDI QIDQ1620095
Publication date: 13 November 2018
Published in: Physica A (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.physa.2016.08.011
Related Items (5)
Reformulation of time-convolutionless mode-coupling theory near the glass transition ⋮ A crucial role of long-range hydrodynamic interactions near the colloidal glass transition based on time-convolutionless mode-coupling theory ⋮ On the relation between a length cutoff in time-convolutionless mode-coupling theory and a characteristic length at \(\beta\)-relaxation stage in glass-forming materials ⋮ Slow dynamics in glass-forming materials at \(\alpha\)- and \(\beta\)-relaxation stages based on time-convolutionless mode-coupling theory ⋮ Statistical-mechanical derivation of transport equations for glass-forming ionic liquids under a weak electric field based on time-convolutionless mode-coupling theory
Cites Work
- Time-convolutionless mode-coupling theory near the Glass transition--A recursion formula and its asymptotic solutions
- A novel difference between strong liquids and fragile liquids in their dynamics near the glass transition
- Statistical-mechanical theory of nonlinear density fluctuations near the glass transition
- Analysis of Classical Statistical Mechanics by Means of Collective Coordinates
- Transport, Collective Motion, and Brownian Motion
- Complex Dynamics of Glass-Forming Liquids
- Generalized Cumulant Expansion Method
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