Comment on "Jamming at zero temperature and zero applied stress: The epitome of disorder".
نویسندگان
چکیده
Phys. Rev. E. 68, 011306 (2003)] claim that a special point J of a "jamming phase diagram" (in density, temperature, stress space) is related to random close packing of hard spheres and that it represents, for their suggested definitions of jammed and random, the recently introduced maximally random jammed state. We point out several difficulties with their definitions and question some of their claims. Furthermore, we discuss the connections between their algorithm and other hard-sphere packing algorithms in the literature.
منابع مشابه
Reply to “Comment on ‘Jamming at zero temperature and zero applied stress: The epitome of disorder’ ”
We answer the questions raised by Donev, Torquato, Stillinger, and Connelly (DTSC) in their preceding Comment on “Jamming at zero temperature and zero applied stress: The epitome of disorder” [Phys. Rev. E 70, 043301 (2004)] We emphasize that we follow a fundamentally different approach than they have done to reinterpret random close packing in terms of the “maximally random jammed” framework. ...
متن کامل2 7 Ju n 20 05 Comment on “ Jamming at zero temperature and zero applied stress : The epitome of disorder ”
O’Hern, Silbert, Liu and Nagel [Phys. Rev. E. 68 , 011306 (2003)] (OSLN) claim that a special point J of a ”jamming phase diagram” (in density, temperature, stress space) is related to random close packing of hard spheres, and that it represents, for their suggested definitions of jammed and random, the recently introduced maximally random jammed state. We point out several difficulties with th...
متن کاملJamming at zero temperature and zero applied stress: the epitome of disorder.
We have studied how two- and three-dimensional systems made up of particles interacting with finite range, repulsive potentials jam (i.e., develop a yield stress in a disordered state) at zero temperature and zero applied stress. At low packing fractions phi, the system is not jammed and each particle can move without impediment from its neighbors. For each configuration, there is a unique jamm...
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We demonstrate that a highly frustrated anisotropic Josephson junction array (JJA) on a square lattice exhibits a zero-temperature jamming transition, which shares much in common with those in granular systems. Anisotropy of the Josephson couplings along the horizontal and vertical directions plays roles similar to normal load or density in granular systems. We studied numerically static and dy...
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ورودعنوان ژورنال:
- Physical review. E, Statistical, nonlinear, and soft matter physics
دوره 70 4 Pt 1 شماره
صفحات -
تاریخ انتشار 2004