자료유형 | 학위논문 |
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서명/저자사항 | Ground States of the Two-Dimensional Electron System at Half-Filling under Hydrostatic Pressure. |
개인저자 | Schreiber, Katherine A. |
단체저자명 | Purdue University. Physics and Astronomy. |
발행사항 | [S.l.]: Purdue University., 2018. |
발행사항 | Ann Arbor: ProQuest Dissertations & Theses, 2018. |
형태사항 | 151 p. |
기본자료 저록 | Dissertation Abstracts International 79-10B(E). Dissertation Abstract International |
ISBN | 9780438017931 |
학위논문주기 | Thesis (Ph.D.)--Purdue University, 2018. |
일반주기 |
Source: Dissertation Abstracts International, Volume: 79-10(E), Section: B.
Adviser: Gabor A. Csathy. |
이용제한사항 | This item is not available from ProQuest Dissertations & Theses. |
요약 | A many-body electron system in two dimensions at high magnetic field hosts a diverse set of electron ground states. Many of these ground states have been well understood for years, yet some continue to challenge researchers. The nu = 5/2 fractio |
요약 | Hydrostatic pressure is a widely-used tool that provides a great deal of insight into condensed matter physics. By shrinking the lattice constant in crystalline systems, pressure changes the Bloch wavefunction and the band structure. As a result |
요약 | With the application of pressure, we observed an unexpected result: a never-before-seen phase transition at filling factor nu = 5/2 from the fractional quantum Hall state to the nematic phase. The nematic phase is a phase characterized by sponta |
요약 | There are many examples of quantum phase transitions in condensed matter, but the one we have observed at nu = 5/2 is unusual. This is a quantum phase transition which changes topological order, as the quantum Hall state is destroyed, as well as |
요약 | To gain further insight into the underlying mechanism of the fractional quantum Hall state-to-nematic transition, we also studied the filling factor nu = 7/2, the closely- related cousin of nu = 5/2, under pressure. The fractional quantum Hall s |
일반주제명 | Physics. Condensed matter physics. Low temperature physics. |
언어 | 영어 |
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