林誠謙 / 兼任副研究員

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連絡資訊

學歷

  • 英國愛丁堡大學物理學博士

秘書

廖慧如 / 886-2-2789-8373

研究興趣

  • 網格計算
  • 計算物理
  • 統計力學
  • 模擬退火演算法、叢集計算
  • 網際網路策略、數位典藏技術

經歷

  • 現任-中研院網格計算(ASGC) 主持人
  • 現任-數位典藏與數位學習國家型科技計畫 國際合作分項計畫(總計畫)計畫主持人
  • 現任-中研院物理所 副研究員
  • 87年起至96年擔任太平洋鄰里協會執行長
  • 79年7月1日至94年6月30日兼任本院計算中心主任

學術著作

期刊論文

  • [1]     ATLAS Collaboration, 2018, “Search for resonant WZ production in the fully leptonic final state in proton–proton collisions at with the ATLAS detector”, PHYSICS LETTERS B, 787, 68-88. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [2]     ATLAS Collaboration, 2018, “Combination of the Searches for Pair-Produced Vectorlike Partners of the Third-Generation Quarks at √s=13  TeV with the ATLAS Detector”, PHYSICAL REVIEW LETTERS, 121, 211801. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [3]     ATLAS Collaboration, 2018, “Combined measurement of differential and total cross sections in the H → γγ and the H → ZZ⁎ → 4ℓ decay channels at √ s = 13 TeV with the ATLAS detector”, PHYSICS LETTERS B, 786, 114-133. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [4]     ATLAS Collaboration, 2018, “Constraints on off-shell Higgs boson production and the Higgs boson total width in ZZ → 4ℓ and ZZ → 2ℓ2ν final states with the ATLAS detector”, PHYSICS LETTERS B, 786, 223-244. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [5]     ATLAS Collaboration, 2018, “Measurement of dijet azimuthal decorrelations in pp collisions at √s=8  TeV with the ATLAS detector and determination of the strong coupling”, PHYSICAL REVIEW D, 98, 092004. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [6]     ATLAS Collaboration, 2018, “Observation of H → b ¯ b decay s and VH production with the ATLA S det ector”, PHYSICS LETTERS B, 786, 59-86. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [7]     ATLAS Collaboration, 2018, “Observation of Centrality-Dependent Acoplanarity for Muon Pairs Produced via Two-Photon Scattering in Pb+Pb Collisions at √sNN=5.02  TeV with the ATLAS Detector”, PHYSICAL REVIEW LETTERS, 121, 212301. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [8]     ATLAS Collaboration, 2018, “Performance of missing transverse momentum reconstruction with the ATLAS detector using proton–proton collisions at s√=13 TeV”, EUROPEAN PHYSICAL JOURNAL C, 78:903. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [9]     ATLAS Collaboration, 2018, “Search for charged Higgs bosons decaying into top and bottom quarks at p s = 13 TeV with the ATLAS detecto”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:85. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [10]     ATLAS Collaboration, 2018, “Search for chargino-neutralino production using recursive jigsaw reconstruction in final states with two or three charged leptons in proton-proton collisions at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 092012. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [11]     ATLAS Collaboration, 2018, “Search for Higgs boson pair production in the γγbb¯¯ final state with 13 TeV pp collision data collected by the ATLAS experiment”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:40. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [12]     ATLAS Collaboration, 2018, “Search for lepton-flavor violation in different-flavor, high-mass final states in pp collisions at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 092008. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [13]     ATLAS Collaboration, 2018, “Search for lepton-flavor-violating decays of the Z boson into a τ lepton and a light lepton with the ATLAS detector”, PHYSICAL REVIEW D, 98, 092010. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [14]     ATLAS Collaboration, 2018, “Search for pair production of heavy vectorlike quarks decaying into hadronic final states in pp collisions at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 092005. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [15]     ATLAS Collaboration, 2018, “Search for pair production of Higgsinos in final states with at least three b-tagged jets in √s=13  TeV pp collisions using the ATLAS detector”, PHYSICAL REVIEW D, 98, 092002. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [16]     ATLAS Collaboration, 2018, “Search for Resonant and Nonresonant Higgs Boson Pair Production in the b¯bτ+τ− Decay Channel in pp Collisions at √s=13  TeV with the ATLAS Detector”, PHYSICAL REVIEW LETTERS, 121, 191801. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [17]     ATLAS Collaboration, 2018, “Searches for exclusive Higgs and Z boson decays into J/ψ γ, ψ(2S) γ, and ϒ(nS) γ at with the ATLAS detector”, PHYSICS LETTERS B, 786, 134-155. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [18]     ATLAS Collaboration, 2018, “Angular analysis of B d 0  → K∗μ+μ− decays in pp collisions at s√=8 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:47. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [19]     ATLAS Collaboration, 2018, “Measurement of colour flow using jet-pull observables in tt¯ events with the ATLAS experiment at s√=13TeV”, EUROPEAN PHYSICAL JOURNAL C, 78:847. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [20]     The ATLAS Collaboration, 2018, “Measurement of the production cross section of three isolated photons in pp collisions at s√ = 8 TeV using the ATLAS detector”, PHYSICS LETTERS B, 781, 55-76. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [21]     ATLAS Collaboration, 2018, “Measurement of the suppression and azimuthal anisotropy of muons from heavy-flavor decays in Pb+Pb collisions at √sNN=2.76 TeV with the ATLAS detector”, PHYSICAL REVIEW C, 98, 044905. (SCIE) (IF: 3.296; SCI ranking: 26.3%)

  • [22]     ATLAS Collaboration, 2018, “Measurements of differential cross sections of top quark pair production in association with jets in pp collisions at s√=13 TeV using the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:159. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [23]     ATLAS Collaboration, 2018, “Probing the Quantum Interference between Singly and Doubly Resonant Top-Quark Production in pp Collisions at √s=13  TeV with the ATLAS Detector”, PHYSICAL REVIEW LETTERS, 121, 152002. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [24]     ATLAS Collaboration, 2018, “Search for dark matter in events with a hadronically decaying vector boson and missing transverse momentum in pp collisions at s√=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:180. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [25]     ATLAS Collaboration, 2018, “Search for R-parity-violating supersymmetric particles in multi-jet final states produced in p–p collisions at √ s = 13 TeV using the ATLAS detector at the LHC”, PHYSICS LETTERS B, 785, 136-158. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [26]     ATLAS Collaboration, 2018, “Search for the Higgs boson produced in association with a vector boson and decaying into two spin-zero particles in the H → aa → 4b channel in pp collisions at s√=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:31. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [27]     ATLAS Collaboration, 2018, “Combination of searches for heavy resonances decaying into bosonic and leptonic final states using 36  fb−1 of proton-proton collision data at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 052008. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [28]     ATLAS Collaboration, 2018, “Measurement of the Higgs boson mass in the H → ZZ⁎ → 4ℓ and H → γγ channels with √ s = 13 TeV pp collisions using the ATLAS detector”, PHYSICS LETTERS B, 784, 345-366. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [29]     ATLAS Collaboration, 2018, “Measurements of Higgs boson properties in the diphoton decay channel with 36  fb−1 of pp collision data at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 052005. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [30]     ATLAS Collaboration, 2018, “Observation of Higgs boson production in association with a top quark pair at the LHC with the ATLAS detector”, PHYSICS LETTERS B, 784, 173-191. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [31]     ATLAS Collaboration, 2018, “Prompt and non-prompt J/ψ and ψ(2S) suppression at high transverse momentum in 5.02 TeV Pb+Pb collisions with the ATLAS experiment”, EUROPEAN PHYSICAL JOURNAL C, 78:762. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [32]     ATLAS Collaboration, 2018, “Prompt and non-prompt J/ψ elliptic flow in Pb+Pb collisions at sNN−−−√=5.02 Tev with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78:784. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [33]     ATLAS Collaboration, 2018, “Search for charged Higgs bosons decaying via H± → τ±ντ in the τ+jets and τ+lepton final states with 36 fb−1 of pp collision data recorded at s√=13 TeV with the ATLAS experiment”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:139. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [34]     ATLAS Collaboration, 2018, “Search for Higgs bosons produced via vector-boson fusion and decaying into bottom quark pairs in √s=13  TeV pp collisions with the ATLAS detector”, PHYSICAL REVIEW D, 98, 052003. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [35]     ATLAS Collaboration, 2018, “Search for supersymmetry in final states with charm jets and missing transverse momentum in 13 TeV pp collisions with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:50. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [36]     ATLAS Collaboration, 2018, “Measurement of jet fragmentation in Pb+Pb and pp collisions at √sNN=5.02 TeV with the ATLAS detector”, PHYSICAL REVIEW C, 98, 024908. (SCIE) (IF: 3.296; SCI ranking: 26.3%)

  • [37]     ATLAS Collaboration, 2018, “Measurement of the Soft-Drop Jet Mass in pp Collisions at √s=13  TeV with the ATLAS Detector”, PHYSICAL REVIEW LETTERS, 121, 092001. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [38]     ATLAS Collaboration, 2018, “Measurements of b-jet tagging efficiency with the ATLAS detector using tt¯ events at s√=13 TeV”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:89. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [39]     ATLAS Collaboration, 2018, “Search for a heavy Higgs boson decaying into a Z boson and another heavy Higgs boson in the ℓℓbb final state in pp collisions at √ s = 13 TeV with the ATLAS detector”, PHYSICS LETTERS B, 783, 392-414. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [40]     ATLAS Collaboration, 2018, “Search for flavor-changing neutral currents in top quark decays t→Hc and t→Hu in multilepton final states in proton-proton collisions at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 032002. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [41]     ATLAS Collaboration, 2018, “Search for heavy resonances decaying to a photon and a hadronically decaying Z/W/H boson in pp collisions at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 032015. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [42]     ATLAS Collaboration, 2018, “Search for Low-Mass Dijet Resonances Using Trigger-Level Jets with the ATLAS Detector in pp Collisions at √s=13  TeV”, PHYSICAL REVIEW LETTERS, 121, 081801. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [43]     ATLAS Collaboration, 2018, “Search for new phenomena using the invariant mass distribution of same-flavour opposite-sign dilepton pairs in events with missing transverse momentum in s√=13 TeV pp collisions with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78:625. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [44]     ATLAS Collaboration, 2018, “Search for pair production of heavy vector-like quarks decaying into high-pT W bosons and top quarks in the lepton-plus-jets final state in pp collisions at s√=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:48. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [45]     ATLAS Collaboration, 2018, “Search for supersymmetry in events with four or more leptons in √s=13  TeV pp collisions with ATLAS”, PHYSICAL REVIEW D, 98, 032009. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [46]     ATLAS Collaboration, 2018, “Search for top squarks decaying to tau sleptons in pp collisions at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 98, 032008. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [47]     ATLAS Collaboration, 2018, “Measurements of t¯t differential cross-sections of highly boosted top quarks decaying to all-hadronic final states in pp collisions at √s=13  TeV using the ATLAS detector”, PHYSICAL REVIEW D, 98, 012003. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [48]     ATLAS Collaboration, 2018, “Search for exclusive Higgs and Z boson decays to ϕγ and ργ with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:127. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [49]     ATLAS Collaboration, 2018, “Search for flavour-changing neutral current top-quark decays t → qZ in proton-proton collisions at s√=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:176. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [50]     ATLAS Collaboration, 2018, “Search for heavy particles decaying into top-quark pairs using lepton-plus-jets events in proton–proton collisions at s√=13 TeV with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78:565. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [51]     ATLAS Collaboration, 2018, “Search for Higgs boson decays into pairs of light (pseudo)scalar particles in the γγjj final state in pp collisions at √ s = 13 Te V with the ATLAS detector”, PHYSICS LETTERS B, 782, 750-767. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [52]     ATLAS Collaboration, 2018, “Search for pair production of up-type vector-like quarks and for four-top-quark events in final states with multiple b-jets with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:89. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [53]     ATLAS Collaboration, 2018, “Measurement of the inclusive and fiducial tt¯ production cross-sections in the lepton+jets channel in pp collisions at s√=8 TeV with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78:487. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [54]     ATLAS Collaboration, 2018, “Search for Higgs boson decays to beyond-the-Standard-Model light bosons in four-lepton events with the ATLAS detector at s√=13 TeV”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:166. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [55]     ATLAS Collaboration, 2018, “Search for long-lived charginos based on a disappearing-track signature in pp collisions at s√=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:22. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [56]     ATLAS Collaboration, 2018, “Search for squarks and gluinos in final states with jets and missing transverse momentum using 36  fb−1 of √s=13  TeV pp collision data with the ATLAS detector”, PHYSICAL REVIEW D, 97, 112001. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [57]     ATLAS Collaboration, 2018, “Search for supersymmetry in final states with missing transverse momentum and multiple b-jets in proton-proton collisions at s√=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:107. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [58]     ATLAS Collaboration, 2018, “Search for top-squark pair production in final states with one lepton, jets, and missing transverse momentum using 36 fb−1 of s√=13 TeV pp collision data with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:108. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [59]     The ATLAS Collaboration, 2018, “Search for W′→tb decays in the hadronic final state using pp collisions at s√=13 TeV with the ATLAS detector”, PHYSICS LETTERS B, 781, 327-348. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [60]     ATLAS Collaboration, 2018, “Measurement of differential cross sections and W+/W− cross-section ratios for W boson production in association with jets at s√=8 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:77. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [61]     ATLAS Collaboration, 2018, “Measurement of inclusive jet and dijet cross-sections in proton-proton collisions at s√=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018:195. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [62]     ATLAS Collaboration, 2018, “Measurement of the cross section for isolated-photon plus jet production in pp collisions at √ s = 13 TeV using the ATLAS detector”, PHYSICS LETTERS B, 780, 578-602. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [63]     The ATLAS Collaboration, 2018, “Measurement of the production cross-section of a single top quark in association with a Z boson in proton-proton collisions at 13 TeV with the ATLAS detector”, PHYSICS LETTERS B, 780, 557-577. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [64]     ATLAS Collaboration, 2018, “Search for a Structure in the B0sπ± Invariant Mass Spectrum with the ATLAS Experiment”, PHYSICAL REVIEW LETTERS, 120, 202007. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [65]     ATLAS Collaboration, 2018, “Search for the Decay of the Higgs Boson to Charm Quarks with the ATLAS Experiment”, PHYSICAL REVIEW LETTERS, 120, 211802. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [66]     The ATLAS Collaboration, 2018, “A search for high-mass resonances decaying to τν in pp collisions at s√ = 13 TeV with the ATLAS detector”, PHYSICAL REVIEW LETTERS, 120 (16), 161802. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [67]     The ATLAS Collaboration, 2018, “A search for resonances decaying into a Higgs boson and a new particle X in the XH→qqbb final state with the ATLAS detector”, PHYSICS LETTERS B, 779, 24-45. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [68]     The ATLAS Collaboration, 2018, “Evidence for the associated production of the Higgs boson and a top quark pair with the ATLAS detector”, PHYSICAL REVIEW D, 97 (7), 072003. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [69]     The ATLAS Collaboration, 2018, “Search for heavy ZZ resonances in the ℓ+ℓ−ℓ+ℓ− and ℓ+ℓ−νν¯ final states using proton proton collisions at s√=13 TeV with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78, 293. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [70]     The ATLAS Collaboration, 2018, “Search for the Standard Model Higgs boson produced in association with top quarks and decaying into a bb¯ pair in pp collisions at s√ = 13 TeV with the ATLAS detector”, PHYSICAL REVIEW D, 97 (7), 072016. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [71]     ATLAS Collaboration, 2018, “Search for the standard model Higgs boson produced in association with top quarks and decaying into a b¯b pair in pp collisions at √s=13  TeV with the ATLAS detector”, PHYSICAL REVIEW D, 97, 072016. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [72]     The ATLAS Collaboration, 2018, “A search for pair-produced resonances in four-jet final states at s√=13 TeV with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78, 250. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [73]     The ATLAS Collaboration, 2018, “Measurement of differential cross-sections of a single top quark produced in association with a W boson at s√=13 TeV with ATLAS”, EUROPEAN PHYSICAL JOURNAL C, 78, 186. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [74]     The ATLAS Collaboration, 2018, “Measurement of the Higgs boson coupling properties in the H→ ZZ*→ 4ℓ decay channel at √s= 13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018, 095. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [75]     The ATLAS Collaboration, 2018, “Search for doubly charged Higgs boson production in multi-lepton final states with the ATLAS detector using proton–proton collisions at √ s = 13 TeV”, EUROPEAN PHYSICAL JOURNAL C, 78, 199. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [76]     The ATLAS Collaboration, 2018, “Search for electroweak production of supersymmetric states in scenarios with compressed mass spectra at sqrt(s)=13 TeV with the ATLAS detector”, PHYSICAL REVIEW D, 97 (5), 052010. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [77]     The ATLAS Collaboration, 2018, “Search for heavy resonances decaying into a W or Z boson and a Higgs boson in final states with leptons and b-jets in 36 fb−1 of s√=13 TeV pp collisions with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018, 174. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [78]     The ATLAS Collaboration, 2018, “Search for long-lived, massive particles in events with displaced vertices and missing transverse momentum in s√ = 13 TeV pp collisions with the ATLAS detector”, PHYSICAL REVIEW D, 97 (5), 052012. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [79]     The ATLAS Collaboration, 2018, “Search for WW/WZ resonance production in ℓνqq final states in pp collisions at s√= 13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018, 42. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [80]     The ATLAS Collaboration, 2018, “Searches for heavy ZZ and ZW resonances in the llqq and ννqq final states in pp collisions at √s=13 TeV with the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2018, 9. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

  • [81]     The ATLAS Collaboration, 2018, “A search for B−L R-parity-violating top squarks in s√=13 TeV pp collisions with the ATLAS experiment”, PHYSICAL REVIEW D, 97 (3), 032003. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

  • [82]     The ATLAS Collaboration, 2018, “Direct top-quark decay width measurement in the tt¯ lepton+jets channel at s√=8 TeV with the ATLAS experiment”, EUROPEAN PHYSICAL JOURNAL C, 78, 129. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [83]     The ATLAS Collaboration, 2018, “Measurement of longitudinal flow de-correlations in Pb+Pb collisions at sNN−−−√=2.76 and 5.02 TeV with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78, 142. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [84]     AT, 2018, “Measurement of multi-particle azimuthal correlations with the subevent cumulant method in pp and p+Pb collisions with the ATLAS detector at the LHC”, PHYSICAL REVIEW C, 97 (2), 024904. (SCIE) (IF: 3.296; SCI ranking: 26.3%)

  • [85]     The ATLAS Collaboration, 2018, “Measurement of quarkonium production in proton-lead and proton-proton collisions at 5.02 TeV with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78, 171. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [86]     The ATLAS Collaboration, 2018, “Measurement of Tau Polarisation in Z/γ→ττ Decays in Proton-Proton Collisions at s√=8 TeV with the ATLAS Detector”, EUROPEAN PHYSICAL JOURNAL C, 78, 163. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

  • [87]     AT, 2018, “Measurement of the exclusive γγ→μ+μ− γ γ → μ + μ − process in proton--proton collisions at s√=13 s = 13 TeV with the ATLAS detector”, PHYSICS LETTERS B, 777, 303-323. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [88]     AT, 2018, “Search for diboson resonances with boson-tagged jets in pp p p collisions at s√=13 s = 13 TeV with the ATLAS detector”, PHYSICS LETTERS B, 777, 91-113. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [89]     The ATLAS Collaboration, 2018, “Search for new phenomena in high-mass final states with a photon and a jet from pp collisions at s√=13 TeV with the ATLAS detector”, EUROPEAN PHYSICAL JOURNAL C, 78, 102. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

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  • [116]     AT, 2017, “Measurements of top-quark pair differential cross-sections in the lepton+jets channel in pp p p collisions at √s=13 TeV using the ATLAS detector”, JOURNAL OF HIGH ENERGY PHYSICS, 2017, 191. (SCIE) (IF: 5.81; SCI ranking: 17.2%)

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  • [753]     The Atlas Collaboration, 2012, “Measurement of the W→τντ Cross Section in pp Collisions at s√ = 7 TeV with the ATLAS experiment”, PHYSICS LETTERS B, 706 (4–5), 276–294. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

  • [754]     The Atlas Collaboration, 2012, “Measurement of the ZZ production cross section and limits on anomalous neutral triple gauge couplings in proton-proton collisions at s√ = 7 TeV with the ATLAS detector”, PHYSICAL REVIEW LETTERS, 108, 041804. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [755]     The ATLAS Collaboration, 2012, “Performance of missing transverse momentum reconstruction in proton-proton collisions at 7 TeV with ATLAS ”, EUROPEAN PHYSICAL JOURNAL C, 72, 1844. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

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  • [758]     The ATLAS Collaboration, 2012, “Search for New Phenomena in ttbar Events With Large Missing Transverse Momentum in Proton-Proton Collisions at √s = 7 TeV with the ATLAS Detector ”, PHYSICAL REVIEW LETTERS, 108, 041805. (SCIE) (IF: 9.161; SCI ranking: 8.1%)

  • [759]     The ATLAS Collaboration, 2012, “Search for supersymmetry in final states with jets, missing transverse momentum and one isolated lepton in √s = 7 TeV pp collisions using 1 fb-1 of ATLAS data ”, PHYSICAL REVIEW D, 85, 012006. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

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  • [761]     The ATLAS Collaboration, 2011, “Measurement of the inclusive isolated prompt photon cross-section in pp collisions at √s= 7 TeV using 35 pb-1 of ATLAS data”, PHYSICS LETTERS B, 706 (2-3),150–167. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

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  • [778]     The ATLAS Collaboration, 2011, “Search for the Standard Model Higgs boson in the decay channel H → ZZ(*) → 4l with the ATLAS detector ”, PHYSICS LETTERS B, Vol. 705, Iss. 5, p. 435-451. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

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  • [800]     The ATLAS Collaboration, 2011, “Search for pair production of first or second generation leptoquarks in proton-proton collisions at √s = 7 TeV using the ATLAS detector at the LHC ”, PHYSICAL REVIEW D, 83, 112006. (SCIE) (IF: 5.296; SCI ranking: 22.1%,20.7%)

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  • [802]     The ATLAS Collaboration, 2011, “Search for stable hadronising squarks and gluinos with the ATLAS experiment at the LHC ”, PHYSICS LETTERS B, 701 (1), 1-19. (SCIE) (IF: 4.771; SCI ranking: 26.5%,21.1%,24.1%)

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  • [820]     The Atlas Collaboration, 2010, “ Drift Time Measurement in the ATLAS Liquid Argon Electromagnetic Calorimeter using Cosmic Muons”, EUROPEAN PHYSICAL JOURNAL C, 70 (3), 755-785. (SCIE) (IF: 4.59; SCI ranking: 27.6%)

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  • [845]     Tsong-Ming Liaw, Ming-Chang Huang, Simon C. Lin, Feng-Yin Li, 2006, “Partition functions and finite-size scalings of Ising model on helical tori”, Physical Rev. E, Vol. 73, p. 055101 (R).

  • [846]     Trees-Juen Chuang, Wen-Chang Lin, Hurng-Chun Lee, Chi-Wei Wang, Keh-Lin Hsiao, Zi-Hao Wang, Danny Shieh, Simon C. Lin, and Lan-Yang Chang, 2003, “A Complexity Reduction Algorithm for Analysis and Annotation of Large Genomic Sequences”, GENOME RESEARCH, 13, 313-322. (SCIE) (IF: 9.043; SCI ranking: 10.4%,8.1%,7.4%)

  • [847]     Tsong-Ming Liaw, Ming-Chang Huang, Yen Liang Chou, and Simon C. Lin, 2002, “Evolution and Structure Formation of the Distribution of Partition Function Zeros: Triangular Type Ising Lattices with Cell Decoration”, PHYSICAL REVIEW E, 65, 066124. (SCIE) (IF: 2.529; SCI ranking: 35.3%,14.5%)

  • [848]     Hsiao-Ping Hsu, Simon C. Lin and Ulrich H. E. Hansmann , 2002, “Energy Landscape Paving for X-ray Structure Determination of Organic Molecules”, ACTA CRYSTALLOGRAPHICA SECTION A, A58, 59-264.

  • [849]     Hsiao-Ping Hsu, Ulrich H. E. Hansmann, and Simon C. Lin , 2001, “Structure Determination of Organic Molecules from Diffraction Data by Simulated Annealing”, PHYSICAL REVIEW E, 64, 056707. (SCIE) (IF: 2.529; SCI ranking: 35.3%,14.5%)

  • [850]     Hsiao-Ping Hsu, Simon C. Lin, Chin-Kun Hu , 2001, “Universal Scaling Functions for Bond Percolating on Planar-random and Square Lattices with Multiple Percolating Clusters”, PHYSICAL REVIEW E, 64, 016127. (SCIE) (IF: 2.529; SCI ranking: 35.3%,14.5%)

  • [851]     T. M. Liaw, M. C. Huang, S. C. Lin, and M. C. Wu , 1999, “Scaling Functions of Interfacial Tensions for a Class of Ising Cylinder”, PHYSICAL REVIEW B, 60, 12994. (SCIE) (IF: 4.036; SCI ranking: 38.7%,25.6%,31.9%)

  • [852]     34. L. L. Kiang, R. H. Tsao, J. H. Li, Simon C. Lin, C.Y. Lo, G. C. Kiang and P. K. Teng, 1995, “A Study of an Asymmetric Compton Suppression Spectrometer by Monte Carlo Simulation”, NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 355 (2-3), 434-438. (SCIE) (IF: 1.455; SCI ranking: 75%,73.7%,50%,75.9%)

  • [853]     R. H. Tsou, Simon C. Lin, and L. L. Kiang , 1994, “Monte Carlo Simulation for Compton Suppression Spectrometer”, COMPUTER PHYSICS COMMUNICATIONS, 83 (1), 30-44. (SCIE) (IF: 4.39; SCI ranking: 31.3%,3.6%)

  • [854]     Simon C. Lin and James H.C. Hsueh , 1994, “A New Methodology of Simulated Annealing for the Optimization Problems”, PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 205 (1-3), 367-374. (SCIE) (IF: 3.263; SCI ranking: 32.6%)

  • [855]     Simon C. Lin and H.C. Hsueh , 1994, “Nearest-Neighbour Heuristic in Accelerated Algorithms of Optimisation Problems”, PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 203 (3-4), 369-380. (SCIE) (IF: 3.263; SCI ranking: 32.6%)

  • [856]     L. L. Kiang, R. H. Tsou, W. J. Lin, Simon C. Lin, G.. C. Kiang, P. K. Teng and S. D. Li , 1993, “A Study on T-shape Compton Suppression Spectrometer by Monte Carlo Simulation”, NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 327 (2-3), 427-432. (SCIE) (IF: 1.455; SCI ranking: 75%,73.7%,50%,75.9%)

  • [857]     Julian J.-L. Ting, Simon C. Lin, and F.Y. Wu , 1991, “Exact Analysis of a Lattice Gas on the 3-12 Lattice with Two-and Three-site Interactions”, JOURNAL OF STATISTICAL PHYSICS, 62 (1), 35-43. (SCIE) (IF: 1.548; SCI ranking: 49.1%)

  • [858]     Simon C. Lin , 1987, “Higher Derivative Interactions in the Interface & Surface Model”, CHINESE JOURNAL OF PHYSICS, 25 (3), 438-452. (SCIE) (IF: 3.237; SCI ranking: 33.7%)

  • [859]     Simon C. Lin and M. J. Lowe , 1983, “Geometrically Invariant Interaction in Capillary Wave Surface Models”, JOURNAL OF PHYSICS A-MATHEMATICAL AND GENERAL, A 16, 347.

學術會議(研討會)論文

  • [1]     Chen, Y.-N., Lin, S. C.; Shyu, M. J., and Yen, E., 2018, “Provenance-Oriented Documentation of Multi-spectral Data”, 60-63 pages, paper presented at Archiving 2018 Conference, National Archives | Washington, DC , USA: Society for Imaging Science and Technology (IS&T), 2018-04-17 ~ 2018-04-20.

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