Publication | Closed Access
Elastic band gaps in a fcc lattice of mercury spheres in aluminum
36
Citations
13
References
2002
Year
Fcc LatticeEngineeringAcoustic MetamaterialMetamaterialsFull Band GapMercury SpheresMaterial PhysicComputational ElectromagneticsMaterials SciencePhysicsCrystal MaterialElastic Band GapsSolid MechanicsElemental MetalMicrostructureBand StructureCondensed Matter PhysicsApplied PhysicsMechanics Of Materials
Elastic waves propagating in a periodic system consisting of mercury spheres arranged in a fcc lattice and surrounded by aluminum have been studied using the layer-multiple-scattering method. The band structure shows wide elastic band gaps along certain high-symmetry directions. For filling ratios of mercury spheres around 8.2%, there is a narrow full band gap with maximum width of the gap over mid-gap frequency of 2.5%. The full band gap can be further enhanced by using a heterostructure containing seven slabs of different sizes of mercury spheres and can be as wide as 14.4%.
| Year | Citations | |
|---|---|---|
Page 1
Page 1