Transport and NMR Studies of Charge Glass in Organic Conductors with Quasi-triangular Lattices -  Takuro Sato

Transport and NMR Studies of Charge Glass in Organic Conductors with Quasi-triangular Lattices (eBook)

(Autor)

eBook Download: PDF
2017 | 1st ed. 2017
XII, 77 Seiten
Springer Singapore (Verlag)
978-981-10-5879-0 (ISBN)
Systemvoraussetzungen
96,29 inkl. MwSt
  • Download sofort lieferbar
  • Zahlungsarten anzeigen

This thesis experimentally demonstrates the much discussed electronic charge-glass states in solids. It focuses on quasi-two-dimensional organic conductors of the θ-(BEDT-TTF)2X family, which form anisotropic triangular lattices, and examines their electronic properties using various measurements: resistivity, time-resolved electric transport, X-ray diffraction analysis, and nuclear magnetic resonance spectroscopy. The hallmark of the charge glass caused by geometrical frustration of lattice structure for those materials is successfully observed for the first time. The thesis provides new insights into the exotic properties of matter driven by strong electron correlations and crystalline frustration.

The introduction enables beginners to understand fundamentals of the charge-glass states and the organic-conductor family θ-(BEDT-TTF)2X. The comprehensive and detailed descriptions of the experimental demonstration make this a valuable resource.



Dr. Takuro Sato is an experimentalist in condensed matter physics. He received his diploma from the Department of Applied Physics, The University of Tokyo in 2012, and his thesis was then selected as the graduation thesis 2012. In 2017, he received his PhD from the Department of Applied Physics, The University of Tokyo. In the same year, he was awarded as the best oral presentation award at The 8th Research Meeting of Cryogenic Research Center.


This thesis experimentally demonstrates the much discussed electronic charge-glass states in solids. It focuses on quasi-two-dimensional organic conductors of the ?-(BEDT-TTF)2X family, which form anisotropic triangular lattices, and examines their electronic properties using various measurements: resistivity, time-resolved electric transport, X-ray diffraction analysis, and nuclear magnetic resonance spectroscopy. The hallmark of the charge glass caused by geometrical frustration of lattice structure for those materials is successfully observed for the first time. The thesis provides new insights into the exotic properties of matter driven by strong electron correlations and crystalline frustration. The introduction enables beginners to understand fundamentals of the charge-glass states and the organic-conductor family ?-(BEDT-TTF)2X. The comprehensive and detailed descriptions of the experimental demonstration make this a valuableresource.

Dr. Takuro Sato is an experimentalist in condensed matter physics. He received his diploma from the Department of Applied Physics, The University of Tokyo in 2012, and his thesis was then selected as the graduation thesis 2012. In 2017, he received his PhD from the Department of Applied Physics, The University of Tokyo. In the same year, he was awarded as the best oral presentation award at The 8th Research Meeting of Cryogenic Research Center.

Background Information.- Experimental.- Charge-Glass State in θ-(BEDT-TTF)2X.- Electronic Crystal Growth.- Conclusions.

Erscheint lt. Verlag 23.8.2017
Reihe/Serie Springer Theses
Zusatzinfo XII, 77 p. 62 illus., 47 illus. in color.
Verlagsort Singapore
Sprache englisch
Themenwelt Naturwissenschaften Chemie Analytische Chemie
Naturwissenschaften Physik / Astronomie Atom- / Kern- / Molekularphysik
Naturwissenschaften Physik / Astronomie Festkörperphysik
Technik Elektrotechnik / Energietechnik
Schlagworte Carbon-13 Nuclear Magnetic Resonance Measurement • Crystallization of Electrons • Geomerical Frustration • Glassy State of Charge • Organic Conductor Materials • Resistivity Measurement • Strongly Correlated Electron System • Time-Resolved Electrical Transport Measurement • X-Ray Diffuse Scattering Measurements
ISBN-10 981-10-5879-2 / 9811058792
ISBN-13 978-981-10-5879-0 / 9789811058790
Haben Sie eine Frage zum Produkt?
PDFPDF (Wasserzeichen)
Größe: 4,0 MB

DRM: Digitales Wasserzeichen
Dieses eBook enthält ein digitales Wasser­zeichen und ist damit für Sie persona­lisiert. Bei einer missbräuch­lichen Weiter­gabe des eBooks an Dritte ist eine Rück­ver­folgung an die Quelle möglich.

Dateiformat: PDF (Portable Document Format)
Mit einem festen Seiten­layout eignet sich die PDF besonders für Fach­bücher mit Spalten, Tabellen und Abbild­ungen. Eine PDF kann auf fast allen Geräten ange­zeigt werden, ist aber für kleine Displays (Smart­phone, eReader) nur einge­schränkt geeignet.

Systemvoraussetzungen:
PC/Mac: Mit einem PC oder Mac können Sie dieses eBook lesen. Sie benötigen dafür einen PDF-Viewer - z.B. den Adobe Reader oder Adobe Digital Editions.
eReader: Dieses eBook kann mit (fast) allen eBook-Readern gelesen werden. Mit dem amazon-Kindle ist es aber nicht kompatibel.
Smartphone/Tablet: Egal ob Apple oder Android, dieses eBook können Sie lesen. Sie benötigen dafür einen PDF-Viewer - z.B. die kostenlose Adobe Digital Editions-App.

Buying eBooks from abroad
For tax law reasons we can sell eBooks just within Germany and Switzerland. Regrettably we cannot fulfill eBook-orders from other countries.

Mehr entdecken
aus dem Bereich
Daten, Formeln, Übungsaufgaben

von Friedrich W. Küster; Alfred Thiel; Andreas Seubert

eBook Download (2023)
De Gruyter (Verlag)
49,95