Zhiyong Lin

About Zhiyong Lin

Zhiyong Lin, With an exceptional h-index of 6 and a recent h-index of 6 (since 2020), a distinguished researcher at University of Science and Technology of China, specializes in the field of 凝聚态物理.

His recent articles reflect a diverse array of research interests and contributions to the field:

Ultrafast magnetization enhancement via the dynamic spin-filter effect of type-II Weyl nodes in a kagome ferromagnet

Topological field-effect transistor based on quasi-two-dimensional tellurium flakes

Flat-band-induced anomalous anisotropic charge transport and orbital magnetism in kagome metal CoSn

Spontaneous folding growth of graphene on h-BN

Dirac fermions in antiferromagnetic FeSn kagome lattices with combined space inversion and time-reversal symmetry

Butterfly-like anisotropic magnetoresistance and angle-dependent berry phase in a type-II Weyl semimetal WP2

Magnetotransport signatures of Weyl physics and discrete scale invariance in the elemental semiconductor tellurium

Zhiyong Lin Information

University

Position

___

Citations(all)

441

Citations(since 2020)

439

Cited By

110

hIndex(all)

6

hIndex(since 2020)

6

i10Index(all)

5

i10Index(since 2020)

5

Email

University Profile Page

Google Scholar

Zhiyong Lin Skills & Research Interests

凝聚态物理

Top articles of Zhiyong Lin

Ultrafast magnetization enhancement via the dynamic spin-filter effect of type-II Weyl nodes in a kagome ferromagnet

Nature Communications

2024/3/18

Topological field-effect transistor based on quasi-two-dimensional tellurium flakes

Physical Review Applied

2022/5/26

Flat-band-induced anomalous anisotropic charge transport and orbital magnetism in kagome metal CoSn

Physical Review Letters

2022/2/28

Dirac fermions in antiferromagnetic FeSn kagome lattices with combined space inversion and time-reversal symmetry

Physical Review B

2020/10/2

Butterfly-like anisotropic magnetoresistance and angle-dependent berry phase in a type-II Weyl semimetal WP2

Chinese Physics Letters

2020/9/1

Magnetotransport signatures of Weyl physics and discrete scale invariance in the elemental semiconductor tellurium

Proceedings of the National Academy of Sciences

2020/5/26

See List of Professors in Zhiyong Lin University(University of Science and Technology of China)

Co-Authors

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