Positron surface state as a spectroscopic probe for characterizing surfaces of topological insulator materials

Topological insulators are attracting considerable interest due to their potential for technological applications and as platforms for exploring wide-ranging fundamental science questions. In order to exploit, fine-tune, control, and manipulate the topological surface states, spectroscopic tools whi...

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Veröffentlicht in:Physical review. B 2016-09, Vol.94 (11), Article 115411
Hauptverfasser: Callewaert, Vincent, Shastry, K., Saniz, Rolando, Makkonen, Ilja, Barbiellini, Bernardo, Assaf, Badih A., Heiman, Donald, Moodera, Jagadeesh S., Partoens, Bart, Bansil, Arun, Weiss, A. H.
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Sprache:eng
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Zusammenfassung:Topological insulators are attracting considerable interest due to their potential for technological applications and as platforms for exploring wide-ranging fundamental science questions. In order to exploit, fine-tune, control, and manipulate the topological surface states, spectroscopic tools which can effectively probe their properties are of key importance. Here, we demonstrate that positrons provide a sensitive probe for topological states and that the associated annihilation spectrum provides a technique for characterizing these states. Firm experimental evidence for the existence of a positron surface state near Bi sub(2) Te sub(2) Se with a binding energy of E sub(b=) 2.7+ or -0.2eV is presented and is confirmed by first-principles calculations. Additionally, the simulations predict a significant signal originating from annihilation with the topological surface states and show the feasibility to detect their spin texture through the use of spin-polarized positron beams.
ISSN:2469-9950
1098-0121
2469-9969
1550-235X
DOI:10.1103/PhysRevB.94.115411