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An energy-based finite-strain model for 3D heterostructured materials

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An energy-based finite-strain model for 3D heterostructured materials
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17
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CC Attribution 3.0 Germany:
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This talk presents a mathematical model that accurately describes the intrinsic strain response of 3D heterostructures arising from lattice mismatch. Combining materials with different lattice constants induces strain, leading to the bending of such heterostructures. To validate our model, we apply it to bimetallic beams and hexagonal hetero-nanowires and perform numerical simulations using finite element methods (FEM). In order to assess the fidelity of the model and the accuracy of simulations, we compare the calculated curvature with analytically derived formulations. The outcomes of our study yield valuable insights into the behavior of strained bent heterostructures. We compare the strain profiles of wurtzite and zincblende crystal structures, shedding light on their distinct characteristics. This is particularly significant as the strain has the potential to influence piezoelectricity, the electronic band structure, and the dynamics of charge carriers.
Materialization (paranormal)Computer animationLecture/Conference
InfinityFood energyMathematical modelConfiguration spaceMathematicsDirection (geometry)Term (mathematics)BendingPoint (geometry)ComputabilityRight angleGoodness of fitPopulation densityCartesian coordinate systemGroup actionCategory of beingParameter (computer programming)Different (Kate Ryan album)Dynamical systemFood energyHexagonMathematical optimizationLinear mapDirichlet-ProblemConfiguration spaceStress (mechanics)Forcing (mathematics)CausalityNilpotente GruppeLattice (group)Physical systemElasticity (physics)Functional (mathematics)2 (number)Algebraic structureMaterialization (paranormal)Nichtlineares GleichungssystemMathematical modelSurfaceSpacetimeTransformation (genetics)ModulformMathematical modelOrientation (vector space)Cubic graphPlane (geometry)Simplex algorithmHyperplaneMatrix (mathematics)Gastropod shellCombinatory logicComputer programmingResultantGeometryMatching (graph theory)AngleDegree (graph theory)Computer animationDiagram
Configuration spaceFatou-MengeFinite element methodGittererzeugungSheaf (mathematics)Clique-widthNormed vector spaceElasticity (physics)Connected spaceAlgebraic structureCurvatureFood energyMathematical analysisLine (geometry)Graph coloringCartesian coordinate systemMatching (graph theory)Connectivity (graph theory)Different (Kate Ryan album)Food energyResultantElasticity (physics)Condition numberWell-formed formulaExpressionClique-widthTerm (mathematics)Torsion (mechanics)Mathematical analysisGastropod shellScherbeanspruchungWave functionBoundary value problemLattice (group)Distribution (mathematics)Observational studyFilm editingThermische ZustandsgleichungCentralizer and normalizerPotential energyFehlerschrankeDiagonal matrixAlpha (investment)DivisorProfil (magazine)Cross section (physics)Sheaf (mathematics)Translation (relic)Order (biology)Interface (chemistry)Configuration spaceBendingGeometryMaterialization (paranormal)CurvatureMathematical modelContrast (vision)Free groupDirection (geometry)Matrix (mathematics)Functional (mathematics)Derivation (linguistics)Physical systemAdditionModulformGradient10 (number)Descriptive statisticsSpacetimePolarization (waves)Thermal conductivityCategory of beingMereologyParameter (computer programming)Nichtlineares GleichungssystemDot productGoodness of fitDiagramComputer animation
Computer animation
Transcript: English(auto-generated)