Ming-Tso Wei
Duke University
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Featured researches published by Ming-Tso Wei.
Physical Review Letters | 2016
Ivan Borzenets; Francois Amet; Chung-Ting Ke; Anne Draelos; Ming-Tso Wei; Andrew Seredinski; K. Watanabe; T. Taniguchi; Yuriy Bomze; Michihisa Yamamoto; S. Tarucha; Gleb Finkelstein
We investigate the critical current I_{C} of ballistic Josephson junctions made of encapsulated graphene-boron-nitride heterostructures. We observe a crossover from the short to the long junction regimes as the length of the device increases. In long ballistic junctions, I_{C} is found to scale as ∝exp(-k_{B}T/δE). The extracted energies δE are independent of the carrier density and proportional to the level spacing of the ballistic cavity. As T→0 the critical current of a long (or short) junction saturates at a level determined by the product of δE (or Δ) and the number of the junctions transversal modes.
MRS Advances | 2018
Andrew Seredinski; Anne Draelos; Ming-Tso Wei; Chung-Ting Ke; Tate Fleming; Yash Mehta; Ethan Mancil; Hengming Li; Takashi Taniguchi; Kenji Watanabe; Seigo Tarucha; Michihisa Yamamoto; Ivan Borzenets; Francois Amet; Gleb Finkelstein
Coupling superconductors to quantum Hall edge states is the subject of intense investigation as part of the ongoing search for non-abelian excitations. Our group has previously observed supercurrents of hundreds of picoamperes in graphene Josephson junctions in the quantum Hall regime. One of the explanations of this phenomenon involves the coupling of an electron edge state on one side of the junction to a hole edge state on the opposite side. In our previous samples, these states are separated by several microns. Here, a narrow trench perpendicular to the contacts creates counterpropagating quantum Hall edge channels tens of nanometres from each other. Transport measurements demonstrate a change in the low-field Fraunhofer interference pattern for trench devices and show a supercurrent in both trench and reference junctions in the quantum Hall regime. The trench junctions show no enhancement of quantum Hall supercurrent and an unexpected supercurrent periodicity with applied field, suggesting the need for further optimization of device parameters.
arXiv: Mesoscale and Nanoscale Physics | 2018
Anne Draelos; Ming-Tso Wei; Andrew Seredinski; Hengming Li; Yash Mehta; Kenji Watanabe; Takashi Taniguchi; Ivan Borzenets; Francois Amet; Gleb Finkelstein
Bulletin of the American Physical Society | 2018
Andrew Seredinski; Anne Draelos; Ming-Tso Wei; Chung-Ting Ke; Tate Fleming; Yash Mehta; Ethan Mancil; Hengming Li; Takashi Taniguchi; Kenji Watanabe; Seigo Tarucha; Michihisa Yamamoto; Ivan Borzenets; Francois Amet; Gleb Finkelstein
Bulletin of the American Physical Society | 2018
Ming-Tso Wei; Anne Draelos; Andrew Seredinski; Chung-Ting Ke; Yash Mehta; Ethan Mancil; Kenji Watanabe; Takashi Taniguchi; Michihisa Yamamoto; Seigo Tarucha; Ivan Borzenets; Francois Amet; Gleb Finkelstein
Bulletin of the American Physical Society | 2018
Anne Draelos; Ming-Tso Wei; Andrew Seredinski; Chung-Ting Ke; Hengming Li; Yash Mehta; Ethan Mancil; Tate Fleming; Kenji Watanabe; Takashi Taniguchi; Michihisa Yamamoto; Seigo Tarucha; Ivan Borzenets; Francois Amet; Gleb Finkelstein
Bulletin of the American Physical Society | 2017
Ming-Tso Wei; Chung Ting Ke; Anne Draelos; Andrew Seredinski; Ivan Borzenets; Kenji Watanabe; Takashi Taniguchi; R. S. Deacon; Michihisa Yamamoto; Yuriy Bomze; Seigo Tarucha; Francois Amet; Gleb Finkelstein
Bulletin of the American Physical Society | 2017
Anne Draelos; Chung-Ting Ke; Ivan Borzenets; Ming-Tso Wei; Andrew Seredenski; Kenji Watanabe; Takashi Taniguchi; R. S. Deacon; Michihisa Yamamoto; Yuriy Bomze; Seigo Tarucha; Francois Amet; Gleb Finkelstein
Bulletin of the American Physical Society | 2017
Ivan Borzenets; Francois Amet; Chung Ting Ke; Anne Draelos; Ming-Tso Wei; Andrew Seredinski; Kenji Watanabe; Takashi Taniguchi; Yuriy Bomze; Michihisa Yamamoto; Seigo Tarucha; Gleb Finkelstein
Bulletin of the American Physical Society | 2017
Chung-Ting Ke; Ivan Borzenets; Francois Amet; Anne Draelos; Ming-Tso Wei; Andrew Seredinski; Kenji Watanabe; Takashi Taniguchi; Yuriy Bomze; Michihisa Yamamoto; Seigo Tarucha; Gleb Finkelstein