Fr. 52.50

Development of alternative processes for top electrode deposition on OLED based on physical vapour depositionprocess

English · Paperback / Softback

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Description

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In Schwere-Fermionen-Systemen führen starke elektronische Korrelationen zur Ausbildung einer besonderen Art von "schweren" Ladungsträgern,deren Natur bislang noch nicht vollständig geklärt ist. Gegenstand dieser Dissertation ist die experimentelle Untersuchung der elektronischen Anregungen in solchen Materialien mittels Tieftemperatur-Rastertunnelspektroskopie. Eine zentrale Stellung nimmt dabei die Präparation geeigneter Probenoberflächen ein. Die spektroskopischen Resultate erlauben Einblicke in die thermische Entwicklung der Korrelationen in Kondogittern - bis hin zu der sich bei tiefen Temperaturen ausbildenden räumlichen Kohärenz - sowie in die Eigenschaften des unkonventionellen supraleitenden Zustandes in Schwere-Fermionen-Supraleitern. Die Messungen demonstrieren vor allem das Potential der Rastertunnelspektroskopie für die Untersuchung stark korrelierter Elektronensysteme.

About the author










Tae Hyun Gil was born in 1976 in Seoul/Korea. He studied at the Myongji University in Yongin where he received his master degree in 2000.
He worked at Sunic system Ltd. in Korea as a manager for process and equipment development. In 2006, he became a research fellow at Fraunhofer institute for photonic microsystems (IPMS) in Dresden, Germany, and started his doctoral work with focus on the sputtering deposition of metal electrode on organic material for organic optoelectronic devices. In 2011, he obtained Ph. D degree from the technical university Dresden under supervision of Prof. Hubert Lakner and Prof. Karl Leo, and he is continuing his work at Fraunhofer IPMS with process development for various OLEDs and novel device concept.

Product details

Authors Tae Hyun Gil
Publisher TUDpress Verlag der Wissenschaften GmbH
 
Languages English
Product format Paperback / Softback
Released 01.01.2011
 
EAN 9783942710541
ISBN 978-3-942710-54-1
No. of pages 212
Dimensions 148 mm x 212 mm x 13 mm
Weight 317 g
Subject Natural sciences, medicine, IT, technology > Technology > Electronics, electrical engineering, communications engineering

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