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Giant negative magnetoresistance induced by the chiral anomaly in individual Cd3As2 nanowires.


ABSTRACT: Dirac electronic materials beyond graphene and topological insulators have recently attracted considerable attention. Cd3As2 is a Dirac semimetal with linear dispersion along all three momentum directions and can be viewed as a three-dimensional analogue of graphene. By breaking of either time-reversal symmetry or spatial inversion symmetry, the Dirac semimetal is believed to transform into a Weyl semimetal with an exotic chiral anomaly effect, however the experimental evidence of the chiral anomaly is still missing in Cd3As2. Here we show a large negative magnetoresistance with magnitude of -63% at 60 K and -11% at 300 K in individual Cd3As2 nanowires. The negative magnetoresistance can be modulated by gate voltage and temperature through tuning the density of chiral states at the Fermi level and the inter-valley scatterings between Weyl nodes. The results give evidence of the chiral anomaly effect and are valuable for understanding the Weyl fermions in Dirac semimetals.

SUBMITTER: Li CZ 

PROVIDER: S-EPMC4703844 | biostudies-other | 2015

REPOSITORIES: biostudies-other

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Giant negative magnetoresistance induced by the chiral anomaly in individual Cd3As2 nanowires.

Li Cai-Zhen CZ   Wang Li-Xian LX   Liu Haiwen H   Wang Jian J   Liao Zhi-Min ZM   Yu Da-Peng DP  

Nature communications 20151217


Dirac electronic materials beyond graphene and topological insulators have recently attracted considerable attention. Cd3As2 is a Dirac semimetal with linear dispersion along all three momentum directions and can be viewed as a three-dimensional analogue of graphene. By breaking of either time-reversal symmetry or spatial inversion symmetry, the Dirac semimetal is believed to transform into a Weyl semimetal with an exotic chiral anomaly effect, however the experimental evidence of the chiral ano  ...[more]

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