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Northern Sky Survey for Gamma-ray Point Sources in 100 TeV Region with the Tibet Air Shower Array
Conference ObjectAbstract: We searched for steady 100 TeV gamma-ray point sources from -10° to +70° in declination based on sixPalabras claves:Autores:Amenomori M., Ayabe S., Bi X.J., Chen D., Cui S.W., Danzengluobu , Ding L.K., Ding X.H., Feng C.F., Feng Z.Y., Gao X.Y., Geng Q.X., Guo H.W., He H.H., He M., Hibino K., Hotta N., Hu H.B., Huang J., Huang Q., Jia H.Y., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Labaciren , Le G.M., Li A.F., Li J.Y., Lou Y.Q., Lu H., Lu S.L., Meng X.R., Mizutani K., Mu J., Munakata K., Nagai A., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Onuma H., Ouchi T., Ozawa S., Ren J.R., Saito T., Saito T.Y., Sakata M., Sasaki T., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., TK Sako, Torii S., Tsuchiya H., Udo S., Wang B.S., Wang H., Wang X., Wang Y.G., Wu H.R., Xue L., Yamamoto Y., Yan C.T., Yang X.C., Yasue S., Ye Z.H., Yu G.C., Yuan A.F., Yuda T., Zhang H.M., Zhang J.L., Zhang N.J., Zhang X.Y., Zhang Y., Zhaxisangzhu , Zhou X.X.Fuentes:googlescopusUnderground Prototype Water Cherenkov Muon Detector with the Tibet Air Shower Array
OtherAbstract: We are planning to build a water‐Cherenkov‐type muon detector (MD) array under the Tibet air showerPalabras claves:Autores:TK SakoFuentes:googleReport on observations of TeV gamma rays with the Tibet air shower array and future prospects
OtherAbstract: The Tibet air shower array, which has an effective area of 37,000 m2 and is located at 4300 m abovePalabras claves:Autores:TK SakoFuentes:googleSpectral index of high-energy cosmic rays by the Compton-Getting effect at solar time frame with the Tibet air shower array
Conference ObjectAbstract: We report on the spectral index of cosmic rays around 10 TeV energy region obtained by observation oPalabras claves:Autores:Amenomori M., Ayabe S., Bi X.J., Chen D., Cui S.W., Danzengluobu , Ding L.K., Ding X.H., Feng C.F., Feng Z.Y., Gao X.Y., Geng Q.X., Guo H.W., He H.H., He M., Hibino K., Hotta N., Hu H.B., Huang J., Huang Q., Jia H.Y., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Labaciren , Le G.M., Li A.F., Li J.Y., Lou Y.Q., Lu H., Lu S.L., Meng X.R., Mizutani K., Mu J., Munakata K., Nagai A., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Onuma H., Ouchi T., Ozawa S., Ren J.R., Saito T., Saito T.Y., Sakata M., Sasaki T., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., TK Sako, Torii S., Tsuchiya H., Udo S., Wang B.S., Wang H., Wang X., Wang Y.G., Wu H.R., Xue L., Yamamoto Y., Yan C.T., Yang X.C., Yasue S., Ye Z.H., Yu G.C., Yuan A.F., Yuda T., Zhang H.M., Zhang J.L., Zhang N.J., Zhang X.Y., Zhang Y., Zhaxisangzhu , Zhou X.X.Fuentes:googlescopusThe all-particle spectrum of primary cosmic rays in the wide energy range from 1014 to 1017 eV observed with the Tibet-III air-shower array
OtherAbstract: We present an updated all-particle energy spectrum of primary cosmic rays in a wide range from 10 14Palabras claves:Autores:TK SakoFuentes:googleThe cosmic-ray Energy spectrum around the knee measured by the Tibet-III air-shower array
OtherAbstract: We present an updated all-particle energy spectrum using data collected in the period from 2000 NovePalabras claves:Autores:TK SakoFuentes:googleThe energy spectrum of all-particle cosmic rays around the knee region observed with the Tibet-III air-shower array
ArticleAbstract: We have already reported the first result on the all-particle spectrum around the knee region basedPalabras claves:Air shower, cosmic rays, kneeAutores:Amenomori M., Ayabe S., Bi X.J., Chen D., Cui S.W., Danzengluobu , Ding L.K., Ding X.H., Feng C.F., Feng Z.Y., Gao X.Y., Geng Q.X., Guo H.W., He H.H., He M., Hibino K., Hotta N., Hu H.B., Huang J., Huang Q., Jia H.Y., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Labaciren , Le G.M., Li A.F., Li J.Y., Lou Y.Q., Lu H., Lu S.L., Meng X.R., Mizutani K., Mu J., Munakata K., Nagai A., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Onuma H., Ouchi T., Ozawa S., Ren J.R., Saito T., Saito T.Y., Sakata M., Sasaki T., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., TK Sako, Torii S., Tsuchiya H., Udo S., Wang B.S., Wang H., Wang X., Wang Y.G., Wu H.R., Xue L., Yamamoto Y., Yan C.T., Yang X.C., Yasue S., Ye Z.H., Yu G.C., Yuan A.F., Yuda T., Zhang H.M., Zhang J.L., Zhang N.J., Zhang X.Y., Zhang Y., Zhaxisangzhu , Zhou X.X.Fuentes:googlescopusTibet air shower array: results and future plan
OtherAbstract: The Tibet air shower array, which has an effective area of 36,900 m 2, has been in operation at YangPalabras claves:Autores:TK SakoFuentes:google