P.C. Yang
National Taiwan University
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Physics Reports | 1980
D. P. Barber; U. Becker; H. Benda; A. Böhm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; C. C. Chang; H. S. Chen; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; A. Hariri; G. Herten; M.C. Ho; H. K. Hsu; R.W. Kadel; W. Krenz; Jin Li; Q. Z. Li; M. Lu; D. Luckey
Abstract This report reviews the experimental investigation of high energy e + e − interactions by the MARK J collaboration at PETRA, the electron-positron colliding beam accelerator at DESY in Hamburg, Germany. The physics objectives include studies of several purely electromagnetic processes and hadronic final states, which further our knowledge of the nature of the fundamental constituents and of their strong, electromagnetic and weak interactions. Before discussing the physics results, the main features and the principal components of the MARK J detector are discussed in terms of design, function, and performance. Several aspects of the on-line data collection and the off-line analysis are also outlined. Results are presented on tests of quantum electrodynamics using e + e − → e + e − , μ + μ − and τ + τ − , on the measurement of R , the ratio of the hadronic to the point-like muon pair cross section, on the search for new quark flavors, on the discovery of three jet events arising from the radiation of hard noncollinear gluons as predicted by quantum chromodynamics, and on the determination of the strong coupling constant α s .
Physics Letters B | 1979
D. P. Barber; U. Becker; H. Benda; A. Boehm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; C. C. Chang; H. S. Chen; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; A. Hariri; G. Herten; M.C. Ho; H. K. Hsu; T.T. Hsu; R.W. Kadel; W. Krenz; Jin Li; Q. Z. Li; M. Lu
Abstract We report the measurement of the reaction e+ + e− → hadronic jets at a center-of-mass energy √s=30 GeV using the MARK-J detector at PETRA. By measuring the energy and angular distribution of both neutrals and charged particles we were able to isolate unambiguously the three-jet events in a kinematic region where the backgrounds from q q and phase space contributions and other processes are small. Various comparisons of the data with quantum chromodynamics were made. The relative yield of three-jet events and the shape distribution of the events enable us to determine αs = 0.23 ± 0.02 (statistical error) with a systematic error of ± 0.04.
Cell Death & Differentiation | 2013
C. C. Chang; M-H Yang; B-R Lin; S-T Chen; S-H Pan; Michael Hsiao; T-C Lai; S-K Lin; Y-M Jeng; C-Y Chu; R-H Chen; P.C. Yang; Y Eugene Chin; M-L Kuo
CCN family protein 2 (CCN2), also known as connective tissue growth factor, is a secreting protein that modulates multiple cellular events. We previously demonstrated the metastasis-suppressive effect of CCN2 in lung cancer cells. In this study, we investigate the role of CCN2 in anoikis, a form of programmed cell death that is critical in suppressing cancer metastasis. CCN2 binds to the epidermal growth factor receptor (EGFR) and triggers ubiquitination by inhibiting the formation of the β-pix/Cbl complex, resulting in the degradation of EGFR. Binding of CCN2 to EGFR suppresses the phosphorylation of c-Src and extracellular signal-regulated kinase but increases the expression of death-associated protein kinase, which leads to anoikis. Overall, our findings provide evidence validating the use of CCN2 as an anti-metastatic therapy in lung cancer patients, and prospect a potential therapeutic synergy between CCN2 and the anti-EGFR antibody for the treatment of lung cancer.
Physics Letters B | 1980
D. P. Barber; U. Becker; G. Berghogff; A. Böhm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; C. C. Chang; Hs Chen; Min Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; A. Hariri; G. Herten; M.C. Ho; H. K. Hsu; T.T. Hsu; R.W. Kadel; W. Krenz; J. Li; Q. Z. Li; M. Lu
Abstract By combining results from the MARK-J at PETRA on Bhabha scattering, μ + μ - and τ + τ - production with recent world data from neutrino-electron scattering experiments, we determine unique values for the leptonic weak neutral current coupling constants g V and g A in the framework of electroweak models containing a single Z 0 . In contrast to previous analyses, we only use data from purely leptonic interactions, and therefore avoid the inherent uncertainties resulting from the use of hadronic targets. From the MARK-J data alone in the context of the standard SU(2) ⊗ U (1) model of Glashow, Weinberg and Salam, we find sin 2 θ W =0.24±0.11.
Physics Letters B | 1979
D. P. Barber; U. Becker; H. Benda; A. Boehm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; C. C. Chang; Hs Chen; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; G. Herten; M.C. Ho; K.K. Hsu; T.T. Hsu; R.W. Kadel; W. Krenz; J. Li; Q. Z. Li; M. Lu; D. Luckey
Abstract We report on the results of the study of e + e − collisions at the highest PETRA energy of √ s = 31.57 GeV, using the 4π sr, electromagnetic and calorimetric detector Mark J. Based on 88 hadron events, and an integrated luminosity of 243 nb −1 we obtain R = σ (e + e − → hadrons)/ σ (e + e − → μ + μ − ) = 4.0 ± 0.5 (statistical) ± 6 (systematic). The R value, the measured thrust distribution and average spherocity show no evidence for the production of new quark flavors.
Physical Review Letters | 1979
D. P. Barber; U. Becker; H. Benda; A. Boehm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; C. C. Chang; Hs Chen; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; A. Hariri; G. Herten; M.C. Ho; H. K. Hsu; T.T. Hsu; R.W. Kadel; W. Krenz; J. Li; Q. Z. Li; M. Lu
Physical Review Letters | 1980
D. P. Barber; U. Becker; G. D. Bei; G. Berghoff; A. Boehm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; M. Capell; C. C. Chang; H. S. Chen; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; Z. Y. Feng; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; A. Hariri; G. Herten; M.C. Ho; T.T. Hsu; D.Z. Jiang; R.W. Kadel; W. Krenz
Physical Review Letters | 1981
D. P. Barber; U. Becker; G. D. Bei; G. Berghoff; A. Boehm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; M. Capell; C.C. Chang; G.F. Chen; H. S. Chen; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; Z. Y. Feng; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; A. Hariri; D. Harting; G. Herten; M.C. Ho; T.T. Hsu; M.M. Ilyas
Physical Review Letters | 1980
D. P. Barber; U. Becker; H. Benda; A. Böhm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; C. C. Chang; H. S. Chen; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; G.Y. Fang; H.S. Fesefeldt; D. Fong; M. Fukushima; J.C. Guo; A. Hariri; G. Herten; M.C. Ho; H. K. Hsu; T.T. Hsu; R.W. Kadel; W. Krenz; Jin Li; Q. Z. Li; M. Lu
Physical Review Letters | 1979
D. P. Barber; U. Becker; H. Benda; A. Boehm; J. G. Branson; J. Bron; D. Buikman; J.D. Burger; C. C. Chang; M. Chen; C.P. Cheng; Y. S. Chu; R. Clare; P. Duinker; H.S. Fesefeldt; D. Fong; M. Fukushima; G. Herten; M.C. Ho; H. K. Hsu; T.T. Hsu; R.W. Kadel; W. Krenz; D. Luckey; C.M. Ma; Ggg Massaro; T. Matsuda; H. B. Newman; Joseph A. Paradiso; F.P. Poschmann