Observation Of Well-Defined Quasiparticles At A Wide Energy Range In A Quasi-Two-Dimensional System

PHYSICAL REVIEW B(2014)

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摘要
We report an observation of a highly anisotropic Dirac-cone structure, and its unconventional electronic behaviors, in high quality SrMnBi2 crystal by angle-resolved photoemission spectroscopy measurement. We observed a well-defined sharp quasiparticle peak in a wide energy range, linearly dispersive, forming a highly anisotropic holelike Dirac cone (upsilon(F1)/upsilon(F2) similar to 5-6). The density of state remains linear, and the scattering rate of the quasiparticle increases linearly as a function of binding energy up to higher binding energy. The results contrast with the expectation for a two-dimensional (2D) or three-dimensional (3D) Fermi-liquid theory and rather suggest the existence of a two-dimensional electron gas system in this 3D material, making SrMnBi2 a potentially useful 2D-electron-gas-encapsulated material.
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关键词
quasiparticles,wide energy range,well-defined,quasi-two-dimensional
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