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20032009
most citedJamming at Zero Temperature and Zero Applied Stress: the Epitome of Disorder

1.6k citations · 3.3k across the 14 of their papers we have counts for

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Showing 2005Show all

6 papers · 1 filter

cond-mat.dis-nn2005

Numerical Studies of the Compressible Ising Spin Glass

Adam H. Marshall, Bulbul Chakraborty, Sidney R. Nagel

We study a two-dimensional compressible Ising spin glass at constant volume. The spin interactions are coupled to the distance between neighboring particles in the Edwards-Anderson…

cond-mat.soft200545 cited

On the stability and growth of single myelin figures

Ling-Nan Zou, Sidney R. Nagel

Myelin figures are long thin cylindrical structures that typically grow as a dense tangle when water is added to the concentrated lamellar phase of certain surfactants. We show tha…

cond-mat.dis-nn2005

Effects of compression on the vibrational modes of marginally jammed solids

Matthieu Wyart, Leonardo E. Silbert, Sidney R. Nagel +1

Glasses have a large excess of low-frequency vibrational modes in comparison with most crystalline solids. We show that such a feature is a necessary consequence of the weak connec…

cond-mat.soft2005

Reply to "Comment on `Jamming at zero temperature and zero applied stress: The epitome of disorder' "

C. S. O'Hern, L. E. Silbert, A. J. Liu +1

We answer the questions raised by Donev, Torquato, Stillinger, and Connelly in their "Comment on "Jamming at zero temperature and zero applied stress: The epitome of disorder.' " W…

physics.flu-dyn2005763 cited

Drop Splashing on a Dry Smooth Surface

Lei Xu, Wendy W. Zhang, Sidney R. Nagel

The corona splash due to the impact of a liquid drop on a smooth dry substrate is investigated with high speed photography. A striking phenomenon is observed: splashing can be comp…

cond-mat.soft2005

Vibrations and diverging length scales near the unjamming transition

L. E. Silbert, A. J. Liu, S. R. Nagel

We numerically study the vibrations of jammed packings of particles interacting with finite-range, repulsive potentials at zero temperature. As the packing fraction is lowered…