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1.
Molecular Beam Epitaxy of Low Dimensional Electron Systems for Topological Quantum Computation
by Pendharkar, Mihir, Ph.D.  University of California, Santa Barbara. 2019: 297 pages; 27669605.
2.
Molecular Beam Epitaxy and High Pressure Studies of van der Waals Magnets
by O'Hara, Dante J., Ph.D.  University of California, Riverside. 2019: 219 pages; 22621542.
6.
Growth and characterization of II-VI semiconductor nanowires grown by Au catalyst assisted molecular beam epitaxy
by Pfeuffer, Rebekka Christina, Ph.D.  Bayerische Julius-Maximilians-Universitaet Wuerzburg (Germany). 2016: 107 pages; 10736487.
7.
Selective Area Epitaxy of Cadmium Telluride on Nanopatterned Substrates
by Fahey, Stephen, Ph.D.  University of Illinois at Chicago. 2012: 238 pages; 3551410.
8.
Film growth and structure design in the barium oxide-strontium oxide-titanium dioxide system
by Fisher, Patrick J., Ph.D.  Carnegie Mellon University. 2008: 201 pages; 3299667.
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10.
Antimonide-Based Compound Semiconductors for Quantum Computing
by Shojaei, Borzoyeh, Ph.D.  University of California, Santa Barbara. 2016: 166 pages; 10195560.
11.
Tensile Quantum Dots and Lattice-Matched Epitaxy on (111) and (110) Surfaces
by Yerino, Christopher Daniel, Ph.D.  Yale University. 2015: 185 pages; 3663591.
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14.
Heterogeneous Integration of III-V Multijunction Solar Cells on Si Substrate: Cell Design & Modeling, Epitaxial Growth & Fabrication
by Jain, Nikhil, Ph.D.  Virginia Polytechnic Institute and State University. 2015: 181 pages; 10596466.
15.
Direct Growth of Graphene-like Films on Single Crystal Quartz Substrates
by Samsonau, Siarhei, Ph.D.  City University of New York. 2013: 108 pages; 3601723.
16.
Epitaxial growth, characterization and application of novel wide bandgap oxide semiconductors
by Mares, Jeremy West, Ph.D.  University of Central Florida. 2010: 151 pages; 3415067.
17.
Wide-Bandgap III-V Materials for Multijunction Solar Cell Integration onto Silicon
by Vaisman, Michelle Ashley, Ph.D.  Yale University. 2018: 313 pages; 10957343.
18.
Catalyst-Free Heteroepitaxy of III-V Semiconductor Nanowires on Silicon, Graphene, and Molybdenum Disulfide
by Asadolahi Baboli, Mohadeseh, Ph.D.  Rochester Institute of Technology. 2020: 190 pages; 28089637.
19.
Synchrotron x-ray studies on structural and chemical ordering in group IV-based magnetic epitaxial films
by Collins, Brian Akira, Ph.D.  The University of North Carolina at Chapel Hill. 2009: 207 pages; 3366472.
20.
Monocrystalline Supersaturated Aluminum Layers Buried in Epitaxial Silicon
by Kim, Hyun Soo, Ph.D.  University of Maryland, College Park. 2019: 234 pages; 27540514.
21.
Selective epitaxial growth techniques to integrate high-quality germanium on silicon
by Leonhardt, Darin, Ph.D.  The University of New Mexico. 2011: 243 pages; 3460987.
23.
Spin Transport and Relaxation in Graphene and Germanium
by Han, Wei, Ph.D.  University of California, Riverside. 2012: 239 pages; 3503274.
24.
Solid state cavity QED systems: Design and applications
by Kim, Hyochul, Ph.D.  University of California, Santa Barbara. 2009: 157 pages; 3390787.
25.
Spin-Dependent Tunneling and Heterovalent Heterointerface Effects in Diluted Magnetic II-VI Semiconductor Heterostructures
by Frey, Alexander, Ph.D.  Bayerische Julius-Maximilians-Universitaet Wuerzburg (Germany). 2012: 166 pages; 27766726.
26.
Ultrathin oxide films as templates for magnetic nanostructures
by Chen, Xumin, Ph.D.  The University of Nebraska - Lincoln. 2013: 126 pages; 3549935.
27.
Manipulating 1D Conduction Channels: From Molecular Geometry to 2D Topology
by Pedramrazi, Zahra, Ph.D.  University of California, Berkeley. 2019: 109 pages; 13882196.
28.
Optical Properties of Organic Nanostructures Grown By Organic Molecular Beam Deposition
by De Silva, Landewatte A. Ajith, Ph.D.  University of Cincinnati. 2006: 174 pages; 10857133.
29.
II-VI and II-VI/III-V Materials-Based Intersubband Devices
by Kaya, Yasin, Ph.D.  Princeton University. 2019: 146 pages; 13885607.
30.
III-V Bismides as a new Heterojunction Material System for Electronic Devices
by Marks, Zefram Dael, Ph.D.  University of Colorado at Boulder. 2014: 139 pages; 3635873.
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