An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy

An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy  

Creator:  Trieu Le
Elina van Kempen
Priyanka Rupasinghe
Publication Date: 2020
Type: Mixed Material
Source Institution: SUNY Oswego Institutional Repository
Holding Location: SUNY Oswego Institution
An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy
An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy

An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy  

Creator:  Trieu Le
Elina M. van Kempen
Priyanka M. Rupasinghe
Publisher: SUNY Oswego
Publication Date: 9/14/2020
Type: Mixed Material
Format: Poster
Source Institution: SUNY Oswego Historical Materials
Holding Location: SUNY Oswego
Subject Keyword:  Atomic Physics
Laser spectroscopy
An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy
An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy

An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy  

Creator:  Trieu Le
Elina M. van Kempen
Priyanka M. Rupasinghe
Publisher: SUNY Oswego Creative Writing Program
Publication Date: 9/14/2020
Type: Artifact
Source Institution: SUNY Oswego Institutional Repository
Holding Location: SUNY Oswego
Subject Keyword:  Atomic Physics
Laser spectroscopy
An Exploration of Hyperfine Structure of Rubidium Within the 5P_{3/2} Excited State Using Saturated Absorption Spectroscopy
Transition Metal Doped Quantum Dots for Photovoltaic Applications

Transition Metal Doped Quantum Dots for Photovoltaic Applications  

Creator:  Trieu Le
Thilini K. Ekanayaka
Annika Neufeld-Kreider
Archit Dhingra
Takashi Komesu
Publisher: SUNY Oswego
Publication Date: 2020
Type: Book
Source Institution: SUNY Oswego
Holding Location: SUNY Oswego Institution
Subject Keyword:  quantum dot
semiconductor
solar cell
Transition Metal Doped Quantum Dots for Photovoltaic Applications