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A metallic mosaic phase and the origin of Mott-insulating state in 1T-TaS2.


ABSTRACT: Electron-electron and electron-phonon interactions are two major driving forces that stabilize various charge-ordered phases of matter. In layered compound 1T-TaS2, the intricate interplay between the two generates a Mott-insulating ground state with a peculiar charge-density-wave (CDW) order. The delicate balance also makes it possible to use external perturbations to create and manipulate novel phases in this material. Here, we study a mosaic CDW phase induced by voltage pulses, and find that the new phase exhibits electronic structures entirely different from that of the original Mott ground state. The mosaic phase consists of nanometre-sized domains characterized by well-defined phase shifts of the CDW order parameter in the topmost layer, and by altered stacking relative to the layers underneath. We discover that the nature of the new phase is dictated by the stacking order, and our results shed fresh light on the origin of the Mott phase in 1T-TaS2.

SUBMITTER: Ma L 

PROVIDER: S-EPMC4792954 | biostudies-literature | 2016 Mar

REPOSITORIES: biostudies-literature

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A metallic mosaic phase and the origin of Mott-insulating state in 1T-TaS2.

Ma Liguo L   Ye Cun C   Yu Yijun Y   Lu Xiu Fang XF   Niu Xiaohai X   Kim Sejoong S   Feng Donglai D   Tománek David D   Son Young-Woo YW   Chen Xian Hui XH   Zhang Yuanbo Y  

Nature communications 20160310


Electron-electron and electron-phonon interactions are two major driving forces that stabilize various charge-ordered phases of matter. In layered compound 1T-TaS2, the intricate interplay between the two generates a Mott-insulating ground state with a peculiar charge-density-wave (CDW) order. The delicate balance also makes it possible to use external perturbations to create and manipulate novel phases in this material. Here, we study a mosaic CDW phase induced by voltage pulses, and find that  ...[more]

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