graphene edge
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2021 ◽  
Vol 119 (6) ◽  
pp. 064001
Author(s):  
Phillip Weinberg ◽  
Adrian E. Feiguin
Keyword(s):  

2021 ◽  
pp. 150867
Author(s):  
L. Yang ◽  
F.X. Chen ◽  
M. Wu ◽  
E.H. Song ◽  
B.B. Xiao ◽  
...  

Author(s):  
Alessio Sacco ◽  
Chiara Portesi ◽  
Andrea Mario Giovannozzi ◽  
Andrea Mario Rossi

2021 ◽  
Author(s):  
Vladimir Prudkovskiy ◽  
Yiran Hu ◽  
Kaimin Zhang ◽  
Yue Hu ◽  
Peixuan Ji ◽  
...  

Abstract The graphene edge state is essential for graphene electronics and fundamental in graphene theory, however it is not observed in deposited graphene. Here we report the discovery of the epigraphene edge state (EGES) in conventionally patterned epigraphene using plasma-based lithography that stabilizes and passivates the edges probably by fusing the graphene edges to the non-polar silicon carbide substrate, as expected. Transport involves a single, essentially dissipationless conductance channel at zero energy up to room temperature. The Fermi level is pinned at zero energy. The EGES does not generate a Hall voltage and the usual quantum Hall effect is observed only after subtraction of the EGES current. EGES transport is highly protected and apparently mediated by an unconventional zero-energy fermion that is half electron and half hole. Interconnected networks involving only the EGES can be patterned, opening the door to a new graphene nanoelectronics paradigm that is relevant for quantum computing.


2021 ◽  
Vol 9 (10) ◽  
pp. 2170035
Author(s):  
Ximiao Wang ◽  
Zebo Zheng ◽  
Ningsheng Xu ◽  
Weiliang Wang ◽  
Huanjun Chen ◽  
...  

2021 ◽  
pp. 2100207
Author(s):  
Ximiao Wang ◽  
Zebo Zheng ◽  
Ningsheng Xu ◽  
Weiliang Wang ◽  
Huanjun Chen ◽  
...  

Author(s):  
Yan Gao ◽  
Dan Xu ◽  
Tian Cui ◽  
Da Li

Hydrogen passivation is an important method used to stabilize a specific graphene edge. Although several hydrogen-terminated graphene edges have been proposed in theory, a comprehensive exploration of highly stable hydrogen-terminated...


2020 ◽  
Vol 3 (12) ◽  
pp. 11725-11735
Author(s):  
Anur Yadav ◽  
Michel Wehrhold ◽  
Tilmann J. Neubert ◽  
Rodrigo M. Iost ◽  
Kannan Balasubramanian

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