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Anomalous Acoustic Plasmon Mode from Topologically Protected States

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arxiv 1705.01685 v3 pith:WK2JKVVK submitted 2017-05-04 cond-mat.mtrl-sci cond-mat.mes-hall

Anomalous Acoustic Plasmon Mode from Topologically Protected States

classification cond-mat.mtrl-sci cond-mat.mes-hall
keywords surfacemodeplasmonacousticcollectivedispersionelectronsexcitations
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Plasmons, the collective excitations of electrons in the bulk or at the surface, play an important role in the properties of materials, and have generated the field of Plasmonics. We report the observation of a highly unusual acoustic plasmon mode on the surface of a three-dimensional topological insulator (TI), Bi2Se3, using momentum resolved inelastic electron scattering. In sharp contrast to ordinary plasmon modes, this mode exhibits almost linear dispersion into the second Brillouin zone and remains prominent with remarkably weak damping not seen in any other systems. This behavior must be associated with the inherent robustness of the electrons in the TI surface state, so that not only the surface Dirac states but also their collective excitations are topologically protected. On the other hand, this mode has much smaller energy dispersion than expected from a continuous media excitation picture, which can be attributed to the strong coupling with surface phonons.

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