Carbon nanotube devices : quantum dots, field effect transistors and memory devices

dc.contributor.advisorYao, Zhen, Ph.D.en
dc.creatorSorger, Volker Jendrik, 1979-en
dc.date.accessioned2016-03-04T15:40:27Z
dc.date.accessioned2018-01-22T22:29:38Z
dc.date.available2016-03-04T15:40:27Z
dc.date.available2018-01-22T22:29:38Z
dc.date.issued2005-12en
dc.description.abstractThis thesis explores different nanoscale devices based on electron transport through carbon nanotubes. The ability of semiconducting carbon nanotubes to show field-effect-transistor (FET) behavior was explored. Local topgates on the carbon nanotube channel show excellent FET characteristics. Single-electron-transistor characteristics based on Coulomb Blockade were investigated at low temperatures. Quantum dots were created in the nanotube channel by local individual addressable topgates. Furthermore, nanoscale flash memory cells based on carbon nanotube FETs were assembled. The information was stored in redox-active molecules placed in the vicinity of the active channel. Device programming with write and erase gate pulses show on/off ratios close to 10⁴ with retention times of 20 min at room temperature. At liquid nitrogen temperatures the device stays in a stable state for up to 8 hours. At low temperatures, a strong increase in retention time was observed and single electron sensitivity was demonstrated. Endurance tests reveal very stable device characteristics upon at least 10⁵ write and erase cycles. Finally, optoelectronic memory characteristics were demonstrated on a Carbon Nanotube - molecule memory cell.en
dc.description.departmentPhysicsen
dc.format.mediumelectronicen
dc.identifierdoi:10.15781/T2112Gen
dc.identifier.urihttp://hdl.handle.net/2152/33518en
dc.language.isoenen
dc.relation.ispartofUT Electronic Theses and Dissertationsen
dc.rightsCopyright © is held by the author. Presentation of this material on the Libraries' web site by University Libraries, The University of Texas at Austin was made possible under a limited license grant from the author who has retained all copyrights in the works.en
dc.rights.restrictionRestricteden
dc.subjectNanoscale devicesen
dc.subjectCarbon nanotubesen
dc.subjectField effect transistorsen
dc.titleCarbon nanotube devices : quantum dots, field effect transistors and memory devicesen
dc.typeThesisen
dc.type.genreThesisen

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