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Proceedings of the 32nd International Cosmic Ray Conference, ICRC 2011(3)
Experimental Astronomy(2)
Proceedings of Science(2)
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Physical Review Letters(1)
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Calibration of the Yangbajing air-shower core detector (YAC) using the beam of BEPC
Conference ObjectAbstract: Aiming at the observation of cosmic-ray chemical composition at the knee energy region, a new type aPalabras claves:Air shower, Cosmic ray, kneeAutores:Amenomori M., Bi X.J., Chen D., Chen W.Y., Cui S.W., Danzengluobu , Ding L.K., Ding X.H., Feng C.F., Feng Z.Y., Gou Q.B., Guo H.W., Guo Y.Q., He H.H., He Z.T., Hibino K., Hotta N., Hu H.B., Huang J., Jia H.Y., Jiang L., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Labaciren , Le G.M., Li A.F., Li W.J., Liu C., Liu J.S., Lu H., Meng X.R., Mizutani K., Munakata K., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Ozawa S., Qian X.L., Qu X.B., Saito T., Saito T.Y., Sakata M., Shao J., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., Torii S., Tsuchiya H., Udo S., Wang H., Wu H.R., Xue L., Yamamoto Y., Yang Z., Yasue S., Yuan A.F., Yuda T., Zhai L.M., Zhang H.M., Zhang J.L., Zhang X.Y., Zhang Y., Zhang Y.I., Zhaxisangzhu , Zhou X.X.Fuentes:scopusAir-shower core detector array to study the mass composition of cosmic rays beyond 100 TeV by Tibet hybrid experiment
Conference ObjectAbstract: New air-shower core detector YAC has been developed to measure cosmic-ray mass composition around thPalabras claves:Air shower, chemical composition, Cosmic ray origin and acceleration, kneeAutores:Amenomori M., Bi X.J., Chen D., Chen W.Y., Cui S.W., Danzengluobu , Ding L.K., Ding X.H., Feng C.F., Feng Z.Y., Gou Q.B., Guo H.W., Guo Y.Q., He H.H., He Z.T., Hibino K., Hotta N., Hu H.B., Huang J., Jia H.Y., Jiang L., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Labaciren , Le G.M., Li A.F., Li W.J., Liu C., Liu J.S., Lu H., Meng X.R., Mizutani K., Munakata K., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Ozawa S., Qian X.L., Qu X.B., Saito T., Saito T.Y., Sakata M., Shao J., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., Torii S., Tsuchiya H., Udo S., Wang H., Wu H.R., Xue L., Yamamoto Y., Yang Z., Yasue S., Yuan A.F., Yuda T., Zhai L.M., Zhang H.M., Zhang J.L., Zhang X.Y., Zhang Y., Zhang Y.I., Zhaxisangzhu , Zhou X.X.Fuentes:scopusExploration of a 100 TeV gamma-ray northern sky using the Tibet air-shower array combined with an underground water-Cherenkov muon-detector array
ArticleAbstract: Aiming to observe cosmic gamma-rays in the 10-1000 TeV energy region, we propose a 10000 m2 undergroPalabras claves:Cosmic-ray acceleration, Gamma-rays, Supernova remnantsAutores:Kawata K., Ohnishi M., Shiomi A., T. K. Sako, Takita M., TK Sako, Tsuchiya H.Fuentes:googlescopusEnergy determination of gamma-ray induced air showers observed by an extensive air shower array
ArticleAbstract: We propose a new energy estimator to determine the energies of gamma-ray induced air showers based oPalabras claves:Air shower, Gamma ray, Scintillation counterAutores:Kawata K., Munakata K., Nakamura Y., Ohnishi M., T. K. Sako, Takita M., TK SakoFuentes:googlescopusLong term stability analysis on the MD-A under TIBET III array
Conference ObjectAbstract: The underground muon detector with water Cherenkov technique is constructed as the upgrade of the TiPalabras claves:Autores:Amenomori M., Bi X.J., Chen D., Chen T.L., Chen W.Y., Cui S.W., Danzengluobu , Ding L.K., Feng C.F., Feng Z.Y., Gou Q.B., Guo Y.Q., He H.H., He Z.T., Hibino K., Hotta N., Hu H.B., Huang J., Jia H.Y., Jiang L., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Kozai M., Labaciren , Le G.M., Li A.F., Li H.J., Li W.J., Liu C., Liu J.S., Liu M.Y., Lu H., Meng X.R., Miyazaki T., Mizutani K., Munakata K., Nakajima T., Nakamura Y., Nanjo H., Nishizawa M., Niwa T., Ohnishi M., Ohta I., Ozawa S., Qian X.L., Qu X.B., Saito T., Saito T.Y., Sakata M., Shao J., 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 H., Wu H.R., Xue L., Yamamoto Y., Yamauchi K., Yang Z., Yasue S., Yuan A.F., Yuda T., Zhai L.M., Zhang H.M., Zhang J.L., Zhang X.Y., Zhang Y., Zhaxisangzhu , Zhou X.X.Fuentes:googlescopusProbe of the solar magnetic field using the "cosmic-ray shadow" of the sun
ArticleAbstract: We report on a clear solar-cycle variation of the Sun's shadow in the 10 TeV cosmic-ray flux observePalabras claves:Autores:Amenomori M., Bi X.J., Chen D., Chen T.L., Chen W.Y., Cui S.W., Danzengluobu , Ding L.K., Feng C.F., Feng Z.Y., Gou Q.B., Guo Y.Q., Hakamada K., He H.H., He Z.T., Hibino K., Hotta N., Hu H.B., Huang J., Jia H.Y., Jiang L., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Labaciren , Le G.M., Li A.F., Li H.J., Li W.J., Liu C., Liu J.S., Liu M.Y., Lu H., Meng X.R., Mizutani K., Munakata K., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Onuma H., Ozawa S., Qian X.L., Qu X.B., Saito T., Saito T.Y., Sakata M., Shao J., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., Torii S., Tsuchiya H., Udo S., Wang H., Wu H.R., Xue L., Yamamoto Y., Yang Z., Yasue S., Yuan A.F., Yuda T., Zhai L.M., Zhang H.M., Zhang J.L., Zhang X.Y., Zhang Y., Zhang Y.I., Zhaxisangzhu , Zhou X.X.Fuentes:scopusStudy of performance improvement for air shower array with surface water Cherenkov detectors
Conference ObjectAbstract: Unlike Imaging Atmospheric Cherenkov Telescopes (IACTs), Extensive Air Shower (EAS) arrays can obserPalabras claves:Autores:Asaba T., Hibino K., Katayose Y., Ohnishi M., Shiomi A., T. K. SakoFuentes:scopusStudy of the large Tyvek bag technique for the water Cherenkov detector in TIBET AS+MD
Conference ObjectAbstract: The Tibet AS-gamma collaboration is constructing 4500 m2 underground muon detector array by using waPalabras claves:Muon detector, Tibet AS array, Tyvek, Water cherenkovAutores:Amenomori M., Bi X.J., Chen D., Chen W.Y., Cui S.W., Danzengluobu , Ding L.K., Ding X.H., Feng C.F., Feng Z.Y., Gou Q.B., Guo H.W., Guo Y.Q., He H.H., He Z.T., Hibino K., Hotta N., Hu H.B., Huang J., Jia H.Y., Jiang L., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Labaciren , Le G.M., Li A.F., Li W.J., Liu C., Liu J.S., Lu H., Meng X.R., Mizutani K., Munakata K., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Ozawa S., Qian X.L., Qu X.B., Saito T., Saito T.Y., Sakata M., Shao J., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., Torii S., Tsuchiya H., Udo S., Wang H., Wu H.R., Xue L., Yamamoto Y., Yang Z., Yasue S., Yuan A.F., Yuda T., Zhai L.M., Zhang H.M., Zhang J.L., Zhang X.Y., Zhang Y., Zhang Y.I., Zhaxisangzhu , Zhou X.X.Fuentes:scopusStudy of water Cherenkov detector to improve the angular resolution of an air-shower array for ultra-high-energy gamma-ray observation
ArticleAbstract: For research on cosmic gamma rays with energies in the range of several tens of teraelectronvolts orPalabras claves:100 TeV gamma ray, Air shower, Water Cherenkov detectorAutores:Hibino K., Katayose Y., Nakada H., Ohnishi M., Shiomi A., T. K. SakoFuentes:scopusTest of the hadronic interaction model EPOS-LHC and QGSJETII-04 with Tibet EAS core data
Conference ObjectAbstract: A hybrid experiment has been started by The Tibet ASγ collaboration at Tibet, China. It consists ofPalabras claves:Air shower core, Cosmic ray, Hadronic interaction modelAutores:Amenomori M., Bi X.J., Chen D., Chen T.L., Chen W.Y., Cui S.W., Danzengluobu , Ding L.K., Feng C.F., Feng Z.Y., Gou Q.B., Guo Y.Q., He H.H., He Z.T., Hibino K., Hotta N., Hu H.B., Hu X.B., Huang J., Jia H.Y., Jiang L., Kajino F., Kasahara K., Katayose Y., Kato C., Kawata K., Kozai M., Labaciren , Le G.M., Li A.F., Li H.J., Li W.J., Liu C., Liu J.S., Liu M.Y., Lu H., Meng X.R., Mizutani K., Munakata K., Nanjo H., Nishizawa M., Ohnishi M., Ohta I., Ozawa S., Qian X.L., Qu X.B., Saito T., Saito T.Y., Sakata M., Shao J., Shibata M., Shiomi A., Shirai T., Sugimoto H., T. K. Sako, Takita M., Tan Y.H., Tateyama N., Torii S., Tsuchiya H., Udo S., Wang H., Wu H.R., Xue L., Yamamoto Y., Yang Z., Yasue S., Yuan A.F., Yuda T., Zhai L.M., Zhang H.M., Zhang J.L., Zhang X.Y., Zhang Y., Zhang Y.I., Zhaxisangzhu , Zhou X.X.Fuentes:scopus