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High-Resolution Spin-Resolved Photoemission Spectrometer and the Rashba Effect in Bismuth Thin Films

High-Resolution Spin-Resolved Photoemission Spectrometer and the Rashba Effect in Bismuth Thin Films - Paperback

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Availability:In StockContributor:Akari TakayamaSeries:Springer ThesesTheme:Aspects (Academic)/Science/Technology AspectsPublish date:9/22/2016Pages:83
Languages:EnglishPublisher:SpringerISBN-13:9784431563723ISBN-10:4431563725UPC:9784431563723Book Category:Science, Technology & EngineeringBook Subcategory:Physics, Spectroscopy & Spectrum Analysis, Materials ScienceBook Topic:Condensed Matter, Thin Films, Surfaces & InterfacesSize:9.21 x 6.14 x 0.20 inchesWeight:0.145Product ID:SCR16FDMAC

In this thesis, the author has developed a high-resolution spin-resolved photoemission spectrometer that achieves the world-best energy resolution of 8 meV. The author has designed a new, highly efficient mini Mott detector that has a large electron acceptance angle and an atomically flat gold target to enhance the efficiency of detecting scattered electrons.

The author measured the electron and spin structure of Bi thin film grown on a Si(111) surface to study the Rashba effect. Unlike the conventional Rashba splitting, an asymmetric in-plane spin polarization and a tremendous out-of-plane spin component were observed. Moreover, the author found that the spin polarization of Rashba surface states is reduced by decreasing the film thickness, which indicates the considerable interaction of Rashba spin-split states between the surface and Bi/Si interface.

Languages:EnglishPublisher:SpringerISBN-13:9784431563723ISBN-10:4431563725UPC:9784431563723Book Category:Science, Technology & EngineeringBook Subcategory:Physics, Spectroscopy & Spectrum Analysis, Materials ScienceBook Topic:Condensed Matter, Thin Films, Surfaces & InterfacesSize:9.21 x 6.14 x 0.20 inchesWeight:0.145Product ID:SCR16FDMAC
Dr. Akari Takayama Advanced institute for materials research (WPI-AIMR) Tohoku University, 2-1-1, Katahira, Aoba-ku, Sendai 980-8577, Japan, a.takayama@arpes.phys.tohoku.ac.jp
Publisher: Springer

Edition

Softcover Repri Edition

Contributor(s)

Akari Takayama

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