Many processes in chemistry and physics rely on the structure, growth or change of material buried in solids. The impenetrable surrounding medium often prohibits the study of such material in situ. Nonlinear light scattering can be used to observe the internal structure of a crystalline state embedded inside another solid state. Vibrational sum frequency scattering patterns of polymer microspheres, consisting of both amorphous and crystalline material, reveal the size of the buried microstructure and the optical components of the second-order susceptibility of the material. The vibrational spectra reveal the molecular structure
The study of the interaction of electromagnetic radiation and matter provides a means to extract inf...
Second harmonic generation (SHG) has emerged as a technique with promise for analysis niches current...
Measurement and comparison of NaNO3 powder concealed in opaque and semi-transparent plastic bottles ...
This research was focused on developing morphology-dependent stimulated raman scattering (MDSRS) spe...
Author Institution: Scientific Laboratory, Ford Motor Company P. O. Box 2053, Dearborn, MichiganWe h...
The need for microstructural characterization extends beyond defect detection and control of fabrica...
AbstractOne of the most powerful techniques to extract physical and chemical information of a materi...
Most of the known self-assembly processes occur in solution, where nanosized objects interact each o...
In this paper, we employ the nonlinear optical microscopies of coherent anti-Stokes Raman scattering...
A simple and inexpensive small-angle light scattering (SALS) instrument for soft condensed matter st...
To study the interactions between Mie scattering and Raman emissions of spherical particles, we meas...
We demonstrate and analyze a series of experiments in traditional and soft condensed matter using co...
Second harmonic generation (SHG) is a nonlinear optical effect sensitive to interfaces between mater...
We use multiple spectroscopic techniques including White-Light Continuum Z-scan to characterize mate...
Optical spectroscopy techniques offer an additional dimension to classical methods for the detection...
The study of the interaction of electromagnetic radiation and matter provides a means to extract inf...
Second harmonic generation (SHG) has emerged as a technique with promise for analysis niches current...
Measurement and comparison of NaNO3 powder concealed in opaque and semi-transparent plastic bottles ...
This research was focused on developing morphology-dependent stimulated raman scattering (MDSRS) spe...
Author Institution: Scientific Laboratory, Ford Motor Company P. O. Box 2053, Dearborn, MichiganWe h...
The need for microstructural characterization extends beyond defect detection and control of fabrica...
AbstractOne of the most powerful techniques to extract physical and chemical information of a materi...
Most of the known self-assembly processes occur in solution, where nanosized objects interact each o...
In this paper, we employ the nonlinear optical microscopies of coherent anti-Stokes Raman scattering...
A simple and inexpensive small-angle light scattering (SALS) instrument for soft condensed matter st...
To study the interactions between Mie scattering and Raman emissions of spherical particles, we meas...
We demonstrate and analyze a series of experiments in traditional and soft condensed matter using co...
Second harmonic generation (SHG) is a nonlinear optical effect sensitive to interfaces between mater...
We use multiple spectroscopic techniques including White-Light Continuum Z-scan to characterize mate...
Optical spectroscopy techniques offer an additional dimension to classical methods for the detection...
The study of the interaction of electromagnetic radiation and matter provides a means to extract inf...
Second harmonic generation (SHG) has emerged as a technique with promise for analysis niches current...
Measurement and comparison of NaNO3 powder concealed in opaque and semi-transparent plastic bottles ...