Large-Area Freestanding Weyl Semimetal WTe_2 Membranes
-
Yequan Chen,
-
Ruxin Liu,
-
Yongda Chen,
-
Xiao Yuan,
-
Jiai Ning,
-
Chunchen Zhang,
-
Liming Chen,
-
Peng Wang,
-
Liang He,
-
Rong Zhang,
-
Yongbing Xu,
-
Xuefeng Wang
-
Abstract
We report a universal transfer methodology for producing artificial heterostructures of large-area freestanding single-crystalline WTe_2 membranes on diverse target substrates. The transferred WTe_2 membranes exhibit a nondestructive structure with a carrier mobility comparable to that of as-grown films (\sim 179–1055 cm^2\cdotV^-1\cdots^-1). Furthermore, the transferred membranes show distinct Shubnikov–de Haas quantum oscillations as well as weak localization/weak anti-localization. These results provide a new approach to the development of atom manufacturing and devices based on atomic-level, large-area topological quantum films.
Article Text
-
-
-
About This Article
Cite this article:
Yequan Chen, Ruxin Liu, Yongda Chen, Xiao Yuan, Jiai Ning, Chunchen Zhang, Liming Chen, Peng Wang, Liang He, Rong Zhang, Yongbing Xu, Xuefeng Wang. Large-Area Freestanding Weyl Semimetal WTe$_{2}$ Membranes[J]. Chin. Phys. Lett., 2021, 38(1): 017101. DOI: 10.1088/0256-307X/38/1/017101
Yequan Chen, Ruxin Liu, Yongda Chen, Xiao Yuan, Jiai Ning, Chunchen Zhang, Liming Chen, Peng Wang, Liang He, Rong Zhang, Yongbing Xu, Xuefeng Wang. Large-Area Freestanding Weyl Semimetal WTe$_{2}$ Membranes[J]. Chin. Phys. Lett., 2021, 38(1): 017101. DOI: 10.1088/0256-307X/38/1/017101
|
Yequan Chen, Ruxin Liu, Yongda Chen, Xiao Yuan, Jiai Ning, Chunchen Zhang, Liming Chen, Peng Wang, Liang He, Rong Zhang, Yongbing Xu, Xuefeng Wang. Large-Area Freestanding Weyl Semimetal WTe$_{2}$ Membranes[J]. Chin. Phys. Lett., 2021, 38(1): 017101. DOI: 10.1088/0256-307X/38/1/017101
Yequan Chen, Ruxin Liu, Yongda Chen, Xiao Yuan, Jiai Ning, Chunchen Zhang, Liming Chen, Peng Wang, Liang He, Rong Zhang, Yongbing Xu, Xuefeng Wang. Large-Area Freestanding Weyl Semimetal WTe$_{2}$ Membranes[J]. Chin. Phys. Lett., 2021, 38(1): 017101. DOI: 10.1088/0256-307X/38/1/017101
|