Anomalous elasticity, fluctuations and disorder in elastic membranes
arXiv:1708.05723 · doi:10.1016/j.aop.2017.08.033
Abstract
Motivated by a freely suspended graphene and polymerized membranes in soft and biological matter we present a detailed study of a tensionless elastic sheet in the presence of thermal fluctuations and quenched disorder. The manuscript is based on an extensive draft dating back to 1993, that was circulated privately. It presents the general theoretical framework and calculational details of numerous results, partial forms of which have been published in brief Letters (Le Doussal and Radzihovsky 1992). The experimental realization of atom-thin graphene sheets has driven a resurgence in this fascinating subject, making our dated predictions and their detailed derivations timely. To this end we analyze the statistical mechanics of a generalized D-dimensional elastic "membrane" embedded in d dimensions using a self-consistent screening approximation (SCSA), that has proved to be unprecedentedly accurate in this system, exact in three complementary limits: d --> infinity, D --> 4, and D=d. Focusing on the critical "flat" phase, for a homogeneous two-dimensional membrane embedded in three dimensions, we predict its universal length-scale dependent roughness, elastic moduli exponents, and a universal negative Poisson ratio of -1/3. We also extend these results to short- and long-range correlated random heterogeneity, predicting a variety of glassy wrinkled membrane states. Finally, we also predict and analyze a continuous crumpling transition in a "phantom" elastic sheet. We hope that this detailed presentation of the SCSA theory will be useful for further theoretical developments and corresponding experimental investigations on freely suspended graphene.
65 pages, 4 figures
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Cited by in corpus (48)
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- Thermalized buckling of isotropically compressed thin sheets
- Scaling behavior of crystalline membranes: an -expansion approach
- Lifshitz gauge duality
- The flat phase of polymerized membranes at two-loop order
- Anharmonicity of the acoustic modes of graphene
- Thermal buckling transition of crystalline membranes in a field
- Interplay between in-plane and flexural phonons in electronic transport of two-dimensional semiconductors
- Absolute Poisson's ratio and the bending rigidity exponent of a crystalline two-dimensional membrane
- Scale without conformal invariance in membrane theory
- Three-loop order approach to flat polymerized membranes
- Phonon-induced exciton weak localization in two-dimensional semiconductors
- Indentation of solid membranes on rigid substrates with Van-der-Waals attraction
- Disorder-induced rippled phases and multicriticality in free-standing graphene
- Spontaneous tilt of single-clamped thermal elastic sheets
- Thermal ripples in bilayer graphene
- Flexural deformations and collapse of bilayer two-dimensional crystals by interlayer exciton
- Elastic properties and mechanical stability of bilayer graphene: Molecular dynamics simulations
- Wrinkling transition in quenched disordered membranes at two loops
- The effect of anomalous elasticity on the bubbles in van der Waals heterostructures
- Distribution of ripples in graphene membrane
- Critical behavior in graphene: spinodal instability at room temperature
- Emergent continuous symmetry in anisotropic flexible two-dimensional materials
- A numerical study of the rippling instability driven by electron-phonon coupling in graphene
- Statistical mechanics of asymmetric tethered membranes: spiral and crumpled phases
- Thermal control of graphene morphology: a signature of its intrinsic surface tension
- Universal behaviors in the wrinkling transition of disordered membranes
- Four-loop critical properties of polymerized membranes
- Effective Field Theory for Acoustic and Pseudo-Acoustic Phonons in Solids
- Flexural phonons in supported graphene: from pinning to localization
- The Structure of Fluctuating Thin Sheets Under Random Forcing
- Flat phase of quenched disordered membranes at three-loop order
- Thermally driven elastic membranes are quasi-linear across all scales
- Disorder-driven transition to tubular phase in anisotropic two-dimensional materials
- Thermal fluctuations in crystalline membranes with long-range dipole interactions
- Auxiliary fields approach to shift-symmetric theories: the derivative theory and the crumpled-to-flat transition of membranes at two-loop order
- Flat polymerized membranes at three-loop order
- Universal wrinkling of freestanding atomically thin films
- Thermalized buckling of extensible, semiflexible polymers
- Geometric control of tilt transition dynamics in single-clamped thermalized elastic sheets
- Geometrically-induced localization of flexural waves on thin warped physical membranes
- Crumpled-to-flat transition of quenched disordered membranes at two-loop order
- Perturbative renormalization and thermodynamics of quantum crystalline membranes
- Lateral response of a layered material with interlayer friction
- Renormalization group approach to the elastic properties of graphene bilayers