Easy-to-configure zero-dimensional valley-chiral modes in a graphene point junction
Preprint 2024 en
Authors
KD
Konstantin Davydov
XZ
Xi Zhang
WR
Wei Ren
Abstract
1 min read
The valley degree of freedom in 2D materials can be manipulated for low-dissipation quantum electronics called valleytronics. At the boundary between two regions of bilayer graphene with different atomic or electrostatic configuration, valley-polarized current has been realized. However, the demanding fabrication and operation requirements limit device reproducibility and scalability toward more advanced valleytronics circuits. We demonstrate a new device architecture of a point junction where a valley-chiral 0D PN junction is easily configured, switchable, and capable of carrying valley current with an estimated polarization of ~80%. This work provides a new building block in manipulating valley quantum numbers and scalable valleytronics.
Artem O. Denisov, Veronika Reckova, Solenn Cances, Max J. Ruckriegel, Michele Masseroni, Christoph Adam, Chuyao Tong, Jonas D. Gerber, W. Huang, Kenji Watanabe, Takashi Taniguchi, Thomas Ihn, K. Ensslin, Hadrien Duprez
Artem O. Denisov, Veronika Reckova, Solenn Cances, Max J. Ruckriegel, Michele Masseroni, Christoph Adam, Chuyao Tong, Jonas D. Gerber, W. Huang, Kenji Watanabe, Takashi Taniguchi, Thomas Ihn, K. Ensslin, Hadrien Duprez
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