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The bursts of high energy events observed by the telescope array surface detector Journal article
Abbasi, R. U., Abe, M., Abu-Zayyad, T., Allen, M., Anderson, R., Azuma, R., Barcikowski, E., Belz, J. W., Bergman, D. R., Blake, S. A., Cady, R., Cheon, B. G., Chiba, J., Chikawa, M., Fujii, T., Fukushima, M., Goto, T., Hanlon, W., Hayashi, Y., Hayashida, N., Hibino, K., Honda, K., Ikeda, D., Inoue, N., Ishii, T., Ishimori, R., Ito, H., Ivanov, D., Jui, C. C. H., Kadota, K., Kakimoto, F., Kalashev, O., Kasahara, K., Kawai, H., Kawakami, S., Kawana, S., Kawata, K., Kido, E., Kim, H. B., Kim, J. H, Kim, J. H., Kishigami, S., Kitamura, S., Kitamura, Y., Kuzmin, V., Kwon, Y. J., Lan, J., Lundquist, J. P., Machida, K., Martens, K., Matsuda, T., Matsuyama, T., Matthews, J. N., Minamino, M., Mukai, K., Myers, I., Nagasawa, K., Nagataki, S., Nakamura, T., Nonaka, T., Nozato, A., Ogio, S., Ogura, J., Ohnishi, M., Ohoka, H., Oki, K., Okuda, T., Ono, M., Onogi, R., Oshima, A., Ozawa, S., Park, I. H., Pshirkov, M. S., Rodriguez, D. C., Rubtsov, G., Ryu, D., Sagawa, H., Saito, K., Saito, Y., Sakaki, N., Sakurai, N., Sampson, A. L., Scott, L. M., Sekino, K., Shah, P. D., Shibata, F., Shibata, T., Shimodaira, H., Shin, B. K., Shin, H. S., Smith, J. D., Sokolsky, P., Springer, R. W., Stokes, B. T., Stratton, S. R., Stroman, T. A., Suzawa, T., Takamura, M., Takeda, M., Takeishi, R., Taketa, A., Takita, M., Tameda, Y., Tanaka, H., Tanaka, K., Tanaka, M., Thomas, S. B., Thomson, G. B., Tinyakov, P., Tkachev, I., Tokuno, H., Tomida, T., Troitsky, S., Tsunesada, Y., Tsutsumi, K., Uchihori, Y., Udo, S., Urban, F., Vasiloff, G., Wong, T., Yamane, R., Yamaoka, H., Yamazaki, K., Yang, J., Yashiro, K., Yoneda, Y., Yoshida, S., Yoshii, H., Zollinger, R., Zundel, Z.. The bursts of high energy events observed by the telescope array surface detector, The bursts of high energy events observed by the telescope array surface detector[J]. PHYSICS LETTERS A, PHYSICS LETTERS A, 2017, 2017, 381, 381(32), 2565-2572, 2565-2572.
Authors:  Abbasi, R. U.;  Abe, M.;  Abu-Zayyad, T.;  Allen, M.;  Anderson, R.; et al.
Favorite | TC[WOS]:34 TC[Scopus]:33  IF:2.3/2.1 | Submit date:2018/10/30
High Energy Radiation  Lightning  Terrestrial Gamma-ray Flash  High Energy Radiation  Lightning  Terrestrial Gamma-ray Flash  
Improvement of the spin-polarized self-consistent-charge extended Huckel tight-binding method Journal article
Kitamura M., Inoue K., Chen H.. Improvement of the spin-polarized self-consistent-charge extended Huckel tight-binding method[J]. Materials Chemistry and Physics, 2000, 62(2), 122-130.
Authors:  Kitamura M.;  Inoue K.;  Chen H.
Favorite | TC[WOS]:5 TC[Scopus]:5 | Submit date:2019/04/08
Electronic structures of transition metal dioxides studied by the spin-polarized self-consistent-charge extended Hückel tight-binding method Journal article
Kitamura M., Inoue K., Chen H.. Electronic structures of transition metal dioxides studied by the spin-polarized self-consistent-charge extended Hückel tight-binding method[J]. Materials Chemistry and Physics, 1998, 56(1), 1-6.
Authors:  Kitamura M.;  Inoue K.;  Chen H.
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Band Theory  Electronic Structure  Hückel Tight-binding Method  Oxides  Transition Metals  
Electronic structure of barium titanate studies by the extended Hückel tight-binding method Journal article
Holma M., Kitamura M., Chen H.. Electronic structure of barium titanate studies by the extended Hückel tight-binding method[J]. Journal of Applied Physics, 1994, 76(1), 451-454.
Authors:  Holma M.;  Kitamura M.;  Chen H.
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Electronic structure of barium titanate studies by the extended Hückel tight-binding method Journal article
Holma M., Kitamura M., Chen H.. Electronic structure of barium titanate studies by the extended Hückel tight-binding method[J]. Journal of Applied Physics, 1994, 76(1), 451-454.
Authors:  Holma M.;  Kitamura M.;  Chen H.
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Phase stability of Ni-based intermetallic compounds Ni3X studied by the recursion method Journal article
Park J., Muramatsu S., Kitamura M., Inoue H.R.P., Chen H.. Phase stability of Ni-based intermetallic compounds Ni3X studied by the recursion method[J]. Materials Chemistry and Physics, 1993, 33(3-4), 214-220.
Authors:  Park J.;  Muramatsu S.;  Kitamura M.;  Inoue H.R.P.;  Chen H.
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Phase stability of Ni-based intermetallic compounds Ni3X studied by the recursion method Journal article
Park J., Muramatsu S., Kitamura M., Inoue H.R.P., Chen H.. Phase stability of Ni-based intermetallic compounds Ni3X studied by the recursion method[J]. Materials Chemistry and Physics, 1993, 33(3-4), 214-220.
Authors:  Park J.;  Muramatsu S.;  Kitamura M.;  Inoue H.R.P.;  Chen H.
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Phase stability of al 3 nb as a function of nickel additions Journal article
Inoue H.R.P., Kitamura M., Wayman C.M., Chen H.. Phase stability of al 3 nb as a function of nickel additions[J]. Philosophical Magazine Letters, 1991, 63(6), 345-353.
Authors:  Inoue H.R.P.;  Kitamura M.;  Wayman C.M.;  Chen H.
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Calculation of the K-absorption edge and its chemical shift of common metals Journal article
Kitamura M., Haydn C.. Calculation of the K-absorption edge and its chemical shift of common metals[J]. Journal of Physics and Chemistry of Solids, 1991, 52(5), 731-734.
Authors:  Kitamura M.;  Haydn C.
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Chemical Shift  Common Metals  K-absorption Edge  Self-consistent Calculation  
Calculation of the K-absorption edge and its chemical shift of common metals Journal article
Kitamura M., Haydn C.. Calculation of the K-absorption edge and its chemical shift of common metals[J]. Journal of Physics and Chemistry of Solids, 1991, 52(5), 731-734.
Authors:  Kitamura M.;  Haydn C.
Favorite | TC[WOS]:7 TC[Scopus]:6 | Submit date:2019/04/08
Chemical Shift  Common Metals  K-absorption Edge  Self-consistent Calculation