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Spontaneous Raman Scattering Enhancement With Microcavities And Multipass Resonators For Trace Gas Detection, Juan Sebastian Gomez Velez Nov 2020

Spontaneous Raman Scattering Enhancement With Microcavities And Multipass Resonators For Trace Gas Detection, Juan Sebastian Gomez Velez

USF Tampa Graduate Theses and Dissertations

The continual increase in production and use of chemicals in an ever-growing field of applications naturally brings forth the necessity to accurately and efficiently measure molecular composition. Spontaneous Raman scattering is a reliable technique which can optically identify molecules based on their intrinsic rotational-vibrational energy structure. The Raman emission from a substance can be spectrally analyzed to detect molecular species simultaneously and with isotopic sensitivity using a single laser source. However, even though the process is non-invasive and effective, the rate at which the emission occurs is notoriously low due to a weak scattering cross-section. Therefore, research into the development …


Fabrication Of Cu2Znsnse4 Thin-Film Solar Cells By A Two-Stage Process, Yejiao Wang Apr 2016

Fabrication Of Cu2Znsnse4 Thin-Film Solar Cells By A Two-Stage Process, Yejiao Wang

USF Tampa Graduate Theses and Dissertations

Copper zinc tin selenide (Cu2ZnSnSe4 or CZTSe) is a quaternary compound semiconductor material that has attained more and more attention for thin film photovoltaic applications. CZTSe is only comprised of abundant and non-toxic elements. People have concerns about availability and cost of indium from CIGS and tellurium from CdTe, also about cadmium’s toxicity. These concerns have promoted CZTSe as an alternative thin film solar cell material. The major issues about CZTSe absorber fabrication are: tin loss during selenization process and existence of secondary phases. Recent improvements of CZTSe absorber have increased the efficiency of CZTSe thin film …


Laser Remote Sensing Of Trace Chemical Species Using 10.6 Μm Co2 Laser Enhanced Breakdown Spectroscopy And Differential Absorption Lidar., Avishekh Pal Nov 2008

Laser Remote Sensing Of Trace Chemical Species Using 10.6 Μm Co2 Laser Enhanced Breakdown Spectroscopy And Differential Absorption Lidar., Avishekh Pal

USF Tampa Graduate Theses and Dissertations

Several different laser remote sensing techniques related to the detection of trace chemical species were studied. In particular, a Differential-Absorption lidar (DIAL), a Laser-Induced-Breakdown Spectroscopy (LIBS) lidar, and a Raman lidar were studied. Several of the laser spectroscopic techniques that were used were common throughout these different studies. More precisely, 10.6 μm CO2 laser related spectroscopy was common for the DIAL and LIBS studies, and 266 nm Nd:YAG laser related spectroscopy was used for the LIBS and Raman studies.

In the first system studied a tunable CO2 DIAL system was developed for the first time to our knowledge …


The Effect Of Hydrogen On The Optical, Structural Properties And The Crystallization Of Gete2 Thin Films Prepared By Rf Magnetron Sputtering, Ke Cao Aug 2008

The Effect Of Hydrogen On The Optical, Structural Properties And The Crystallization Of Gete2 Thin Films Prepared By Rf Magnetron Sputtering, Ke Cao

USF Tampa Graduate Theses and Dissertations

Thin films of GeTe₂ were deposited on glass substrates using RF magnetron sputtering with various hydrogen flow rates in the growth chamber. Transmission data of deposited films were taken and used to determine optical constants: refractive index (n), extinction coefficient (κ), and absorption coefficient (α)) and the energies: E₀₄, E₀₃, Tauc band gap E[subscript]Tauc and Urbach energy E[subscript]U. An increase of these energies was observed with increasing hydrogen flow rate. This increase is interpreted on the basis of the density of state model proposed by Mott and Davis. An increase of network disorder due to the inclusion of hydrogen into …


Computer Simulation Of Stand-Off Libs And Raman Lidar For Remote Sensing Of Distant Compounds, Dzianis Pliutau Jun 2007

Computer Simulation Of Stand-Off Libs And Raman Lidar For Remote Sensing Of Distant Compounds, Dzianis Pliutau

USF Tampa Graduate Theses and Dissertations

Long range stand-off Raman and Laser-Induced Breakdown Spectroscopy (LIBS) lidar signal simulations have been carried out using a modified UV-visible atmospheric transmission program and a modified lidar equation. The Hitran-PC atmospheric transmission program which normally operates over the wavelength range of 400 nm to the far-IR was modified to provide UV atmospheric attenuation (200 nm -- 400 nm) using the optical cross section data contained in the HITRAN database. The two-way lidar equation was modified in order to simulate the one-way propagation of the Raman and LIBS spectral, and thus provide calculations of the expected Raman or LIBS signal as …