TY - JOUR
T1 - Energetic rigidity. II. Applications in examples of biological and underconstrained materials
AU - Damavandi, Ojan Khatib
AU - Hagh, Varda F.
AU - Santangelo, Christian D.
AU - Manning, M. Lisa
N1 - Publisher Copyright:
© 2022 American Physical Society.
PY - 2022/2/1
Y1 - 2022/2/1
N2 - This is the second paper devoted to energetic rigidity, in which we apply our formalism to examples in two dimensions: Underconstrained random regular spring networks, vertex models, and jammed packings of soft particles. Spring networks and vertex models are both highly underconstrained, and first-order constraint counting does not predict their rigidity, but second-order rigidity does. In contrast, spherical jammed packings are overconstrained and thus first-order rigid, meaning that constraint counting is equivalent to energetic rigidity as long as prestresses in the system are sufficiently small. Aspherical jammed packings on the other hand have been shown to be jammed at hypostaticity, which we use to argue for a modified constraint counting for systems that are energetically rigid at quartic order.
AB - This is the second paper devoted to energetic rigidity, in which we apply our formalism to examples in two dimensions: Underconstrained random regular spring networks, vertex models, and jammed packings of soft particles. Spring networks and vertex models are both highly underconstrained, and first-order constraint counting does not predict their rigidity, but second-order rigidity does. In contrast, spherical jammed packings are overconstrained and thus first-order rigid, meaning that constraint counting is equivalent to energetic rigidity as long as prestresses in the system are sufficiently small. Aspherical jammed packings on the other hand have been shown to be jammed at hypostaticity, which we use to argue for a modified constraint counting for systems that are energetically rigid at quartic order.
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U2 - 10.1103/PhysRevE.105.025004
DO - 10.1103/PhysRevE.105.025004
M3 - Article
C2 - 35291184
AN - SCOPUS:85125571932
SN - 2470-0045
VL - 105
JO - Physical Review E
JF - Physical Review E
IS - 2
M1 - 025004
ER -