This dissertation reports infrared (sub-THz through visible/UV) spectroscopy studies of two novel semiconductor systems: dilute (ferro)magnetic semiconductors (DMSs) and topological insulators (TIs). The first part addresses work on thin films of the canonical DMS, (Ga,Mn)As. In this system there is general consensus that the ferromagnetic mechanism is mediated by itinerant holes introduced by the Mn doping. However, the details of this exchange have been widely contested, and center on the character of the electronic states in the vicinity of the Fermi level. Through detailed infrared studies, we show the important role played by Mn impurity states in the transport dynamics and ferromagnetic interaction. In the second part, I focus on epit...
Technology where a solitary dopant acts as the active component of an opto-electronic device is an e...
The recently discovered time-reversal-invariant topological insulator (TI) has led to the flourishin...
For decades, ferromagnetic semiconductors have captured the scientific community’s interest, harness...
Infrared spectroscopy is used to study the doping and temperature dependence of the intragap absorpt...
The three-dimensional topological insulators Bi₂Se₃ and Bi₂Te₃ are model systems of a new class of m...
The breaking of time-reversal symmetry by ferromagnetism is predicted to yield profound changes to t...
Magnetic topological insulators (MTIs) are a novel materials class in which a topologically nontrivi...
Abstract The influence of the addition of Bi to the dilute ferromagnetic semiconductor (Ga,Mn)As on ...
The development of ferromagnetism in Mn-doped Bi2Te3 is characterized through measurements on a seri...
This dissertation reports on ``infrared" measurements of exotic phases in condensed matter systems: ...
We present a numerical model study of the zero-temperature infrared optical properties of (III,Mn)V ...
We present a comprehensive study of the crystal structure of the thin-film, ferromagnetic topologica...
We show that the strongly spin-orbit coupled materials Bi2Te3 and Sb2Te3 and their derivatives belon...
A long-standing problem in condensed matter physics is to understand the multifaceted role of local ...
Topological insulators (TIs) are recently predicted, and much studied, new quantum materials. These ...
Technology where a solitary dopant acts as the active component of an opto-electronic device is an e...
The recently discovered time-reversal-invariant topological insulator (TI) has led to the flourishin...
For decades, ferromagnetic semiconductors have captured the scientific community’s interest, harness...
Infrared spectroscopy is used to study the doping and temperature dependence of the intragap absorpt...
The three-dimensional topological insulators Bi₂Se₃ and Bi₂Te₃ are model systems of a new class of m...
The breaking of time-reversal symmetry by ferromagnetism is predicted to yield profound changes to t...
Magnetic topological insulators (MTIs) are a novel materials class in which a topologically nontrivi...
Abstract The influence of the addition of Bi to the dilute ferromagnetic semiconductor (Ga,Mn)As on ...
The development of ferromagnetism in Mn-doped Bi2Te3 is characterized through measurements on a seri...
This dissertation reports on ``infrared" measurements of exotic phases in condensed matter systems: ...
We present a numerical model study of the zero-temperature infrared optical properties of (III,Mn)V ...
We present a comprehensive study of the crystal structure of the thin-film, ferromagnetic topologica...
We show that the strongly spin-orbit coupled materials Bi2Te3 and Sb2Te3 and their derivatives belon...
A long-standing problem in condensed matter physics is to understand the multifaceted role of local ...
Topological insulators (TIs) are recently predicted, and much studied, new quantum materials. These ...
Technology where a solitary dopant acts as the active component of an opto-electronic device is an e...
The recently discovered time-reversal-invariant topological insulator (TI) has led to the flourishin...
For decades, ferromagnetic semiconductors have captured the scientific community’s interest, harness...