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29 March 2024 |
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Giant negative magnetoresistance induced by the chiral anomaly in individual Cd3As2 nanowires | Cai-Zhen Li
; Li-Xian Wang
; Haiwen Liu
; Jian Wang
; Zhi-Min Liao
; Da-Peng Yu
; | Date: |
28 Apr 2015 | Abstract: | Cd3As2 is a newly booming Dirac semimetal with linear dispersion along all
three momentum directions and can be viewed as 3D analog of graphene. As
breaking of either time reversal symmetry or spatial inversion symmetry, the
Dirac semimetal is believed to transform into Weyl semimetal with exotic chiral
anomaly effect, while the experimental evidence of the chiral anomaly is still
missing in Cd3As2. Here we report the magneto-transport properties of
individual Cd3As2 nanowires. Large negative magnetoresistance (MR) with
magnitude of -63% at 60 K and -11% at 300 K are observed when the magnetic
field is parallel with the electric field direction, giving the evidence of the
chiral magnetic effect in Cd3As2 nanowires. In addition, the critical magnetic
field BC, where there is an extremum of the negative MR, increases with
increasing temperature. As the first observation of chiral anomaly induced
negative MR in Cd3As2 nanowires, it may offer valuable insights for low
dimensional physics in Dirac semimetals. | Source: | arXiv, 1504.7398 | Services: | Forum | Review | PDF | Favorites |
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