21 citations · 21 across the 6 of their papers we have counts for
6 papers
Dissecting mode-coupling theory for supercooled liquids
Ilian Pihlajamaa, Liesbeth M. C. Janssen
The mode-coupling theory (MCT) of the glass transition ranks among the most successful first-principles kinetic theories to describe glassy dynamics. However, MCT does not fully ac…
Simple fluctuations in simple glass formers
Corentin C. L. Laudicina, Patrick Charbonneau, Yi Hu +4
Critical single-particle fluctuations associated with particle displacements are inherent to simple glass-forming liquids in the limit of large dimensions and leave a pseudo-critic…
Comparison of integral equation theories of the liquid state
Ilian Pihlajamaa, Liesbeth M. C. Janssen
The Ornstein-Zernike equation is a powerful tool in liquid state theory for predicting structural and thermodynamic properties of fluids. Combined with a suitable closure, it has b…
Microscopic theory for nonequilibrium correlation functions in dense active fluids
Vincent E. Debets, Lila Sarfati, Thomas Voigtmann +1
One of the key hallmarks of dense active matter in the liquid, supercooled, and solid phases is so-called equal-time velocity correlations. Crucially, these correlations can emerge…
Emergent structural correlations in dense liquids
Ilian Pihlajamaa, Corentin C. L. Laudicina, Chengjie Luo +1
The complete quantitative description of the structure of dense and supercooled liquids remains a notoriously difficult problem in statistical physics. Most studies to date focus s…
Many-body correlations are non-negligible in both fragile and strong glassformers
Chengjie Luo, Joshua F. Robinson, Ilian Pihlajamaa +3
It is widely believed that the emergence of slow glassy dynamics is encoded in a material's microstructure. First-principles theory [mode-coupling theory (MCT)] is able to predict…