J
James Hone
Researcher at Columbia University
Publications - 702
Citations - 128248
James Hone is an academic researcher from Columbia University. The author has contributed to research in topics: Graphene & Monolayer. The author has an hindex of 127, co-authored 637 publications receiving 108193 citations. Previous affiliations of James Hone include DARPA & Santa Fe Institute.
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Twistable electronics with dynamically rotatable heterostructures
TL;DR: In this paper, the authors demonstrate a new device architecture in which a layered heterostructure can be dynamically twisted, in situ, by varying the relative angle between the layers of two-dimensional materials.
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Bright visible light emission from graphene
Young Duck Kim,Hakseong Kim,Yujin Cho,Ji Hoon Ryoo,Cheol-Hwan Park,Pilkwang Kim,Yong Seung Kim,Sunwoo Lee,Yilei Li,Seung Nam Park,Yong Shim Yoo,Duhee Yoon,Vincent E. Dorgan,Eric Pop,Tony F. Heinz,James Hone,Seung-Hyun Chun,Hyeonsik Cheong,Sangwook Lee,Myung-Ho Bae,Yun Daniel Park +20 more
TL;DR: Hot electrons become spatially localized at the centre of the graphene layer, resulting in a 1,000-fold enhancement in thermal radiation efficiency and paving the way towards the realization of commercially viable large-scale, atomically thin, flexible and transparent light emitters and displays with low operation voltage and graphene-based on-chip ultrafast optical communications.
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Scaling of resistance and electron mean free path of single-walled carbon nanotubes.
TL;DR: An unusually long mean free path at room temperature has been experimentally confirmed and suggests anomalous localization effects in single-walled carbon nanotube devices with channel lengths that vary 4 orders of magnitude.
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Tuning quantum nonlocal effects in graphene plasmonics
Mark B. Lundeberg,Yuanda Gao,Reza Asgari,Cheng Tan,Ben Van Duppen,Marta Autore,Pablo Alonso-González,Achim Woessner,Kenji Watanabe,Takashi Taniguchi,Rainer Hillenbrand,James Hone,Marco Polini,Frank H. L. Koppens,Frank H. L. Koppens +14 more
TL;DR: Graphene plasmons are used, propagating at extremely slow velocities close to the electron Fermi velocity, to probe the nonlocal response of the graphene electron liquid, and a parameter-free match with the full quantum description of the massless Dirac electron gas is revealed.
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Tailoring the Electronic Structure in Bilayer Molybdenum Disulfide via Interlayer Twist
Arend M. van der Zande,Jens Kunstmann,Alexey Chernikov,Daniel Chenet,Yumeng You,Xiao-Xiao Zhang,Pinshane Y. Huang,Timothy C. Berkelbach,Lei Wang,Fan Zhang,Mark S. Hybertsen,Mark S. Hybertsen,David A. Muller,David R. Reichman,Tony F. Heinz,James Hone +15 more
TL;DR: Electronic structure calculations show the interlayer separation changes with twist due to repulsion between sulfur atoms, resulting in shifts of the indirect optical transition energies.