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  5. The Development and Implementation of a Testing Regime for a Laser Spectroscopy Sample Chamber
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The Development and Implementation of a Testing Regime for a Laser Spectroscopy Sample Chamber

Date Issued
December 1, 2021
Author(s)
Hartman, Jonathan D
Advisor(s)
Howard L. Hall
Additional Advisor(s)
Howard L. Hall
Leigh R. Martin
Lawrence Heilbronn
Ondrej Chvala
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/42649
Abstract

This thesis is divided into two main sections. The first component will be on the creation and implementation of a testing regime for the sample chamber that may be employed in a field-deployable laser spectroscopy system for nuclear safeguards measurement applications. The testing regime will consist of various benchmarks that comprehensively characterize sample chamber performance. The second part of this thesis will culminate with a novel comparison of the Ultraviolet-Visible spectrum (300-500 nm) of the Laser Induced Breakdown Spectroscopy (LIBS) of trace elements in synthetic (radioactive and non-radioactive) nuclear melt glass and authentic trinitite with a Femtosecond (Fs) laser. Sixteen unique characteristic peaks for all ten primary elements which make up trinitite (Al, Ca, Fe, K, Mg, Mn, Na, O, Si, Ti) were found in each of the non-radioactive/radioactive nuclear melt glass and trinitite samples and subsequently cross referenced through use of the U.S. National Institute of Standards and Technology (NIST) LIBS database and past published Fs-LIBS literature. Additionally, the novel temporal evolution of Fs-LIBS spectra of uranium in radioactive nuclear melt glass and Trinitite with the spectrometer centered around 421nm and 424nm were compared. Throughout this thesis, the challenges of developing fs-LIBS to the rigorous standards that are required for this analytical technique to be employed as a nuclear safeguards technology for environmental sampling or other similar applications within the nuclear fuel cycle will be foreshadowed.

Subjects

Nuclear Safeguards

Environmental Samplin...

LIBS

Trinitite

Nuclear Melt Glass

IAEA

Disciplines
Nuclear Engineering
Degree
Master of Science
Major
Nuclear Engineering
Embargo Date
December 15, 2024
File(s)
Thumbnail Image
Name

Daniel_Hartman_MS_Thesis_DRAFT_V11.0__FINAL_.docx

Size

12.63 MB

Format

Microsoft Word XML

Checksum (MD5)

2d3560188bc5f0f80f4690fcce85436f

Thumbnail Image
Name

auto_convert.pdf

Size

5.21 MB

Format

Adobe PDF

Checksum (MD5)

0c45a6a6123c30d89a8742228442022e


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