The Atacama Cosmology Telescope: Cosmological Parameters from the 2008 Power Spectra (open access)

The Atacama Cosmology Telescope: Cosmological Parameters from the 2008 Power Spectra

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Date: June 18, 2013
Creator: Dunkley, J.; Hlozek, R.; Sievers, J.; Acquaviva, V.; Ade, P. A. R.; Aguirre, P. et al.
Object Type: Article
System: The UNT Digital Library
PATCHY SILICA-COATED SILVER NANOWIRES AS SERS SUBSTRATES (open access)

PATCHY SILICA-COATED SILVER NANOWIRES AS SERS SUBSTRATES

We report a class of core-shell nanomaterials that can be used as efficient surface-enhancement Raman scattering (SERS) substrates. The core consists of silver nanowires, prepared through a chemical reduction process, that are used to capture 4- mercaptobenzoic acid (4-MBA), a model analyte. The shell was prepared through a modified Stöber method and consists of patchy or full silica coats. The formation of silica coats was monitored via transmission electron microscopy, UV-visible spectroscopy and phase-analysis light scattering for measuring effective surface charge. Surprisingly, the patchy silica coated silver nanowires are better SERS substrate than silver nanowires; nanomolar concentration of 4-MBA can be detected. In addition, “nano-matryoshka” configurations were used to quantitate/explore the effect of the electromagnetic field at the tips of the nanowire (“hot spots”) in the Raman scattering experiment.
Date: March 29, 2013
Creator: Murph, S. & Murphy, C.
Object Type: Article
System: The UNT Digital Library
Optical Spectroscopic Observations of Gamma-ray Blazars Candidates I: Preliminary Results (open access)

Optical Spectroscopic Observations of Gamma-ray Blazars Candidates I: Preliminary Results

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Date: November 8, 2013
Creator: Paggi, A.; Milisavljevic, D.; Masetti, N.; Jimenez-Bailon, E.; Chavushyan, V.; D'Abrusco, R. et al.
Object Type: Article
System: The UNT Digital Library
Scanning angle Raman spectroscopy: Investigation of Raman scatter enhancement techniques for chemical analysis (open access)

Scanning angle Raman spectroscopy: Investigation of Raman scatter enhancement techniques for chemical analysis

This thesis outlines advancements in Raman scatter enhancement techniques by applying evanescent fields, standing-waves (waveguides) and surface enhancements to increase the generated mean square electric field, which is directly related to the intensity of Raman scattering. These techniques are accomplished by employing scanning angle Raman spectroscopy and surface enhanced Raman spectroscopy. A 1064 nm multichannel Raman spectrometer is discussed for chemical analysis of lignin. Extending dispersive multichannel Raman spectroscopy to 1064 nm reduces the fluorescence interference that can mask the weaker Raman scattering. Overall, these techniques help address the major obstacles in Raman spectroscopy for chemical analysis, which include the inherently weak Raman cross section and susceptibility to fluorescence interference.
Date: March 14, 2013
Creator: Meyer, Matthew W.
Object Type: Thesis or Dissertation
System: The UNT Digital Library