Single W boson production is analyzed in a data sample collected by L3 detector at Large Electron Positron Collider in 1998.The integrated luminosity is 176.4pb^(-1)with center-of-mass energy at√s=189GeV.The signal c...Single W boson production is analyzed in a data sample collected by L3 detector at Large Electron Positron Collider in 1998.The integrated luminosity is 176.4pb^(-1)with center-of-mass energy at√s=189GeV.The signal consists of large missing energy final states with a single energetic lepton or two hadronic jets.The total cross section of single W production is measured to be 0.58±0.13±0.04 pb,in good agreement with standard model prediction.From this measurement,the limits on the anomalousγWW triple-gauge-boson couplings are derived at 95%confidence level:-0.48<△_(kr)<0.38 and-0.50<λ_(γ)<0.41.展开更多
Loss of light yield of doped lead tungstate crystals after irradiation with a low dose rate has been observed.The La,Pr,and Y doping may improve radiation hardness,whereas Bi or Mo doping is harmful.
基金Supported by the National Natural Science Foundation of China under Grant Nos.19675047 and 19555003,and Swiss Federal Institute of Technology(ETH,Zurich).
文摘Single W boson production is analyzed in a data sample collected by L3 detector at Large Electron Positron Collider in 1998.The integrated luminosity is 176.4pb^(-1)with center-of-mass energy at√s=189GeV.The signal consists of large missing energy final states with a single energetic lepton or two hadronic jets.The total cross section of single W production is measured to be 0.58±0.13±0.04 pb,in good agreement with standard model prediction.From this measurement,the limits on the anomalousγWW triple-gauge-boson couplings are derived at 95%confidence level:-0.48<△_(kr)<0.38 and-0.50<λ_(γ)<0.41.
基金Supported by the Chinese Academy of Sciences under Grant No.006.
文摘Loss of light yield of doped lead tungstate crystals after irradiation with a low dose rate has been observed.The La,Pr,and Y doping may improve radiation hardness,whereas Bi or Mo doping is harmful.