Applied Physics Letters · 2004 · 331 citations · 15 references
Rayleigh InstabilityEngineeringMetallic NanomaterialsElectron MicroscopyNanoscale ModelingCopper NanowiresNanostructure SynthesisNanometrologyNanoscale ScienceNanomechanicsNanophotonicsPlasmonic MaterialMaterials SciencePhysicsNanotechnologyPhotonic MaterialsPlasmonicsNanomaterialsApplied PhysicsNanofabrication
Rayleigh instability of copper nanowires has been experimentally demonstrated. After annealing 30–50-nm-diam wires at temperatures between 400 and 600°C, different stages of the fragmentation process are observed by scanning electron microscopy. At 400°C, the wires start to fragment, forming shorter sections at 500°C, and finally decaying into a chain of nanospheres at 600°C. Average diameter and spacing of the spheres are in agreement with theoretical predictions. The Rayleigh instability applied to nanowires provides a structuring technique producing long chains of nanospheres, which should find interesting applications, for instance, by guiding light below the diffraction limit via coherent coupling of surface-plasmon polaritons.
15
One‐Dimensional Nanostructures: Synthesis, Characterization, and Applications
Yan Xia, Pengfei Yang, Yugang Sun et al. · Advanced Materials · 2003 · 8.5K citations
Engineering, Two-dimensional Materials, Low Dimensional Material +20
Lord Rayleigh · Proceedings of the London Mathematical Society · 1878 · 3K citations · Full text
Highly Polarized Photoluminescence and Photodetection from Single Indium Phosphide Nanowires
Jianfang Wang, Mark S. Gudiksen, Xiangfeng Duan et al. · Science · 2001 · 1.8K citations
Rayleigh jets from levitated microdroplets
Denis Duft, T. Achtzehn, René Müller et al. · Nature · 2003 · 426 citations · Full text