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Book
Spin-Orbit-Induced Spin Textures of Unoccupied Surface States on Tl/Si(111)
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ISBN: 9783319187624 3319187619 9783319187617 3319187627 Year: 2015 Publisher: Cham : Springer International Publishing : Imprint: Springer,

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Abstract

This thesis describes the construction of a rotatable spin-polarized electron source and its use in spin- and angle-resolved inverse photoemission to investigate the unoccupied electron states of Tl/Si(111)-(1x1) with special emphasis on their spin texture. Towards more efficient electronics - with the electron spin as information carrier: This motto is the motivation for numerous studies in solid state physics that deal with electron states whose spin degeneracy is lifted by spin-orbit interaction. This thesis addresses the spin-orbit-induced spin textures in momentum space in the surface electronic structure of a prototypical Rashba-type hybrid system: heavy metal thallium on semiconducting silicon. For Tl/Si(111)-(1x1), the thallium adlayer provides surface states with strong spin-orbit interaction and peculiar spin-orbit-induced spin textures: spin rotations and spin chirality in momentum space for unoccupied surface states with giant spin splittings. Almost completely out-of-plane spin-polarized valleys in the vicinity of the Fermi level are identified. As the valley polarization is oppositely oriented at specific points in momentum space, backscattering should be strongly suppressed in this system.


Book
Diffusion in materials : selected, peer reviewed papers from the International Conference on Diffusion in Materials (DIMAT 2014), August 17-22, 2014, Münster, Germany
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ISBN: 3038268135 9783038268130 9783038354277 Year: 2015 Publisher: Pfaffikon, Switzerland : Trans Tech Publications,

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Collection of selected, peer reviewed papers from the International Conference on Diffusion in Materials (DIMAT 2014), August 17-22, 2014, Münster, Germany. The 34 papers are grouped as follows: Chapter 1: Reactions and Interdiffusion in Binary and Multicomponent Systems; Chapter 2: Ion Transport; Chapter 3: Defects, Stresses and Relaxation; Chapter 4: Short-Circuit Diffusion; Chapter 5: Diffusion Phenomena under Strong Gravitation; Chapter 6: Diffusion-Related Phenomena; Chapter 7: Advanced Methods of Diffusion Measurement Editors Divinski, Bracht, and Stolwijk present students, academics, re

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