Principal Investigator

Vanessa Sih [CV] [contact information]

Current Graduate Students

Estefanio Kesto


Alumni

Timothy William Saucer, "Templated Quantum Dots and Optimized Photonic Crystal Cavities," Physics Ph.D. 2013 (link to dissertation)
Benjamin Michael Norman, "Electrical Generation of Spin Polarization in Strained III-V Semiconductors," Physics Ph.D. 2014 (link to dissertation)
Jieun Lee, "Spatial and Temporal Control of Quantum Dots for On-Chip Integration," Physics Ph.D. 2014 (link to dissertation)
Christopher J. Trowbridge, "Electron and Nuclear Spin Dynamics and Coupling in InGaAs," Applied Physics Ph.D. 2015 (link to dissertation)
Brennan C. Pursley, "Resonant and Time Resolved Spin Noise Spectroscopy of Electron Spin Dynamics in Semiconductors," Applied Physics Ph.D. 2015 (link to dissertation)
Marta Luengo-Kovac, "Investigation of Current Induced Spin Polarization in III-V Semiconductor Epilayers," Physics Ph.D. 2017 (link to dissertation)
Xinlin Song, "Optical Measurements of Spin/Valley Polarization in Transition Metal Dichalcogenides," Applied Physics Ph.D. 2018 (link to dissertation)
Michael Macmahon, "Investigation of the Coupled Electron-Nuclear Spin System in GaAs Under Periodic Optical Electron Spin Pumping," Physics Ph.D. 2019 (link to dissertation)
Joseph Rocco Iafrate, "Current-Induced Spin Polarization and Dynamic Nuclear Polarization: Generation and Manipulation of Electron and Nuclear Spin Polarization in Gallium Arsenide," Applied Physics Ph.D. 2020 (link to dissertation)
Spencer Batalden, "Spatially Resolved Optical Measurements of Electron and Hole Spins in Monolayer Tungsten Diselenide," Applied Physics Ph.D. 2021 (link to dissertation)
Hua-Wei Hsu, "Time-dependent Nuclear Spin Polarization, Effects of Device Non-uniformity on the Gunn Effect, and Electron Spin dynamics at High Electric Fields in GaAs," Applied Physics Ph.D. 2022 (link to dissertation)
Michael Dominguez, "Analysis of the Coupled Electron and Nuclear Spin Systems from Optically Induced Dynamic Nuclear Polarization in GaAs, Applied Physics Ph.D. 2022 (link to dissertation)