Journal of Applied Physics · 2001 · 57 citations · 16 references
Optical MaterialsEngineeringOptical GlassMetallic NanomaterialsIon ImplantationOptical PropertiesNanophotonicsPlasmonic MaterialMaterials SciencePhysicsNanotechnologyNon-linear OpticPhotonic MaterialsOptical CeramicSurface Plasmon ResonanceLarge EnhancementPlasmonicsCu-silica CompositesImplantation ConditionsMaterial AnalysisNanomaterialsApplied PhysicsThird-order Optical SusceptibilityNanofabricationCu NanocompositesOptoelectronics
Low-energy high-current ion implantation in silica at a well-controlled substrate temperature has been used to produce composites containing a large concentration of spherical Cu clusters with an average diameter of 4 nm and a very narrow size distribution. A very large value for the third-order optical susceptibility, χ(3)=10−7 esu, has been measured in the vicinity of the surface plasmon resonance by degenerate four-wave mixing at 585 nm. This value is among the largest values ever reported for Cu nanocomposites. Additionally, the response time of the nonlinearity has been found to be shorter than 2 ps. The superior nonlinear optical response of these implants is discussed in terms of the implantation conditions.
16
<i>Small-Angle Scattering of X-Rays</i>
A. Guinier, G. Fournet, C. B. Walker et al. · Physics Today · 1956 · 4.3K citations
Optical Effects of Ion Implantation
Materials Characterization · 1995 · 692 citations
Picosecond nonlinear optical response of a Cu:silica nanocluster composite
Richard F. Haglund, R.H. Magruder, Klaus Becker et al. · Optics Letters · 1993 · 221 citations