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Chen Wang

Researcher at Zhejiang Normal University

Publications -  510
Citations -  9027

Chen Wang is an academic researcher from Zhejiang Normal University. The author has contributed to research in topics: Computer science & Medicine. The author has an hindex of 38, co-authored 392 publications receiving 5589 citations. Previous affiliations of Chen Wang include Shanghai Jiao Tong University & Soochow University (Suzhou).

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Exact solvability of the quantum Rabi model using Bogoliubov operators

TL;DR: In this paper, Braak et al. showed that the two-photon Rabi model can be solved exactly by treating extended squeezed states on an equal footing, and the isolated Juddian solutions are also analytically obtained in terms of degeneracy.
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Performance of electron and photon triggers in ATLAS during LHC Run 2

Georges Aad, +2957 more
TL;DR: In this paper, the trigger algorithms and selection were optimized to control the rates while retaining a high efficiency for physics analyses at the ATLAS experiment to cope with a fourfold increase of peak LHC luminosity from 2015 to 2018 (Run 2), and a similar increase in the number of interactions per beam-crossing to about 60.
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Search for Heavy Higgs Bosons Decaying into Two Tau Leptons with the ATLAS Detector Using pp Collisions at s =13 TeV

Georges Aad, +2965 more
TL;DR: A search for heavy neutral Higgs bosons is performed using the LHC Run 2 data, corresponding to an integrated luminosity of 139 fb^{-1} of proton-proton collisions at sqrt[s]=13‬TeV recorded with the ATLAS detector.
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Selenium Exposure and Cancer Risk: an Updated Meta-analysis and Meta-regression

TL;DR: High selenium exposure decreased the risk of breast cancer, lung cancer, esophageal cancer, gastric cancer, and prostate cancer, but it was not associated with colorectal cancers, bladder cancers, and skin cancer.
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Terahertz biosensing with a graphene-metamaterial heterostructure platform

TL;DR: In this paper, a simple biosensing platform was proposed by integrating a monolayer graphene on a terahertz (THz) metamaterial absorber cavity, where the introduction of sensing targets results in a large change of the metammaterial resonant absorption (or reflection) because of their strong interaction with graphene.