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Jing Guo

Researcher at Shanghai Jiao Tong University

Publications -  586
Citations -  44712

Jing Guo is an academic researcher from Shanghai Jiao Tong University. The author has contributed to research in topics: Large Hadron Collider & Higgs boson. The author has an hindex of 85, co-authored 566 publications receiving 39436 citations. Previous affiliations of Jing Guo include Tsinghua University & Politehnica University of Bucharest.

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Ballistic carbon nanotube field-effect transistors

TL;DR: It is shown that contacting semiconducting single-walled nanotubes by palladium, a noble metal with high work function and good wetting interactions with nanotube, greatly reduces or eliminates the barriers for transport through the valence band of nanot tubes.
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One-dimensional electrical contact to a two-dimensional material.

TL;DR: In graphene heterostructures, the edge-contact geometry provides new design possibilities for multilayered structures of complimentary 2D materials, and enables high electronic performance, including low-temperature ballistic transport over distances longer than 15 micrometers, and room-tem temperature mobility comparable to the theoretical phonon-scattering limit.
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N-doping of graphene through electrothermal reactions with ammonia.

TL;DR: An n-type graphene field-effect transistor that operates at room temperature is fabricated and confirmed the carbon-nitrogen species in graphene thermally annealed in ammonia is covalently functionalized by nitrogen species.
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Atomically thin p–n junctions with van der Waals heterointerfaces

TL;DR: The tunnelling-assisted interlayer recombination of the majority carriers is responsible for the tunability of the electronic and optoelectronic processes in atomically thin p-n heterojunctions fabricated using van der Waals assembly of transition-metal dichalcogenides.
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Combined Measurement of the Higgs Boson Mass in pp Collisions at √s=7 and 8 TeV with the ATLAS and CMS Experiments

Georges Aad, +5120 more
TL;DR: A measurement of the Higgs boson mass is presented based on the combined data samples of the ATLAS and CMS experiments at the CERN LHC in the H→γγ and H→ZZ→4ℓ decay channels.