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LCS Gamma-ray Research Group

Publications in 2014

掲載日:2019年4月1日更新
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Refereed Articles

  1. Analysis on effects of transverse electric field in an injector cavity of compact-ERL at KEK, J-G. Hwang, E-S Kim, T. Miyajima, Y. Honda, K. Harada, M. Shimada, R. Takai, T. Kume, S. Nagahashi, T. Obiba, N. Nakamura, S. Sakanaka, R. Hajima, R. Nagai, N. Nishimori, M. Yamamoto, T. Uchiyama, E. Kako, S. Michizono and T. Miura, Nucl. Instrum. Meth. A, 753, 97-104 (2014).
  2. Improvement to the semi-empirical germanium detector response model at the Compton edge, C. T. Angell, Nucl. Instrum. Meth. A, 752, 33-35 (2014).
  3. Statistical uncertainties of nondestructive assay for spent nuclear fuel by using nuclear resonance fluorescence, T. Shizuma, T. Hayakawa, C. T. Angell, R. Hajima, F. Minato, K. Suyama, M. Seya, M.S. Johnson, D. P. McNabb, Nucl. Instrum. Meth. A, 737, 170-175 (2014).
  4. Application of laser Compton scattered gamma-ray beams to nondestructive detection and assay of nuclear material, R. Hajima, T. Hayakawa, T. Shizuma, C. T. Angell, R. Nagai, N. Nishimori, M. Sawamura, S. Matsuba, A. Kosuge, M. Mori and M. Seya, Euro. Phys. J. Special Topics, 223, 1229-1236 (2014).
  5. Experimental investigation of an optimum configuration for a high-voltage photoemission gun for operation at >500 kV, N. Nishimori, R. Nagai, S. Matsuba, R. Hajima, M. Yamamoto, Y. Honda, T. Miyajima, H. Iijima, M. Kuriki and M. Kuwahara, Phys. Rev. ST Accel. Beams, 17, 053401 (2014).
  6. Erratum: “Concepts in nuclear science illustrated through experiments with radon” [Am. J. Phys. 80, 61-65 (2012)], C. T. Angell, A. C. Kaplan, J. D. Seelig, E. B. Norman and M. Pedrett, Am. J. Phys. 82, 802 (2014).
  7. Spectroscopy of Gd153 and Gd157 using the (p, dγ) reaction, T. J. Ross, R. O. Hughes, J. M. Allmond, C. W. Beausang, C. T. Angell, M. S. Basunia, D. L. Bleuel, J. T. Burke, R. J. Casperson, J. E. Escher, P. Fallon, R. Hatarik, J. Munson, S. Paschalis, M. Petri, L. W. Phair, J. J. Ressler and N. D. Scielzo, Phys. Rev. C, 90, 044323 (2014).
  8. Validating resonance properties using nuclear resonance fluorescence, C. T. Angell, R. Hajima, T. Hayakawa, T. Shizuma, H. J. Karwowski and J. Silano, Phys. Rev. C, 90, 054315 (2014).
  9. Method for determining individual deposition velocities of radon progeny, C. T. Angell, M. Pedretti and E. B. Norman, Applied Radiation and Isotopes, 98, 34-39 (2014).
  10. Neutron angular distribution in (γ, n) reactions with linearly polarized γ-ray beam generated by laser Compton scattering, K. Horikawa, S. Miyamoto, T. Mochizuki, S. Amano, D. Li, K. Imasaki, Y. Izawa, K. Ogata, S. Chiba and T. Hayakawa, Phys. Lett. B, 737, 109-113 (2014).
  11. Excited states above the proton threshold in 26Si, T. Komatsubara, S. Kubono, T. Hayakawa, T. Shizuma, A. Ozawa, Y. Ito, Y. Ishibashi, T. Moriguchi, H. Yamaguchi, D. Kahl, S. Hayakawa, D. N. Binh, A. A. Chen, J. Chen, K. Setoodehnia and T. Kajino, Euro. Phys. J. A, 50, 136 (2014).
  12. In-beam γ-ray spectroscopy of 30P via the 28Si(3He, p-γ)30P reaction, E. Mcneice, K. Setoodehnia, B. Singh, Y. Abe, D. N. Binh, A. A. Chen, J. Chen, S. Cherubini, S. Fukuoka, T. Hashimoto, T. Hayakawa, Y. Ishibashi, Y. Ito, D. Kahl, T. Komatsubara, S. Kubono, T. Moriguchi, D. Nagae, R. Nishikiori, T. Niwa, A. Ozawa, T. Shizuma, H. Suzuki, H. Yamaguchi and T. Yuasa, Nuclear Data Sheets, 120, 88 (2014).
  13. Polarization-selectable cavity locking method for generation of laser Compton scattered γ-rays, A. Kosuge, M. Mori, H. Okada, R. Hajima and K. Nagashima, Optics Express, 22, 6613-6619 (2014).

Invited Talks

Design of High-Power Free-Electron Lasers for EUV Lithography Applications,Ryoichi Hajima, 2014 International Workshop on EUV and Soft X-Ray Sources,November 3-6, 2014 Dublin, Ireland, Design of High-Power Free-Electron Lasers[PDFファイル/2.67MB]

Others

Non-destructive Measurements of Nuclear Materials in Nuclear Security,T. Hayakawa, M. Fujiwara,Journal of the Atomic Energy Society of Japan, Vol. 56, No. 7 (2014) 448-452. (in Japanese)

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