Application of laser Compton photon beam to nondestructive tests

Author:

TOYOKAWA Hiroyuki1

Affiliation:

1. Research Institute of Instrumentation Frontier, AIST

Publisher

The Editorial Committee of Synthesiology

Subject

General Social Sciences,General Engineering

Reference12 articles.

1. [1] M. Fujii: X-ray micro-computed tomography, Journal of the Japanese Society for Non-Destructive Inspection, 54 (5), 228-232 (2005) (in Japanese).

2. [2] M. Uesaka, T. Natsui, K. Lee, K. Dobashi, T. Yamamoto, T. Fujiwara, H. Zhu, K. Demachi, E. Tanabe, M. Yamamoto, N. Nakamura, J. Kusano, T. Higo, S. Fukuda, M. Yoshida and S. Matsumoto: 950 keV, 3.95 MeV and 6 MeV X-band linacs for nondestructive evaluation and medicine, Nucl. Instrum. and Methods in Phys. Res. A, 657 (1), 82-87 (2011).

3. [3] R. H. Milburn: Electron scattering by an intense polarized photon field, Phys. Rev. Lett., 10 (3), 75-77 (1963).

4. [6] J. H. Hubbell and S. M. Seltzer: Tables of X-Ray Mass Attenuation Coefficients and Mass Energy-Absorption Coefficients from 1 keV to 20 MeV for Elements Z = 1 to 92 and 48 Additional Substances of Dosimetric Interest* (http://www.nist.gov/pml/data/xraycoef/), Accessed 2015-01-18.

5. [7] H. Toyokawa, S. Goko, S. Hohara, T. Kaihori, F. Kaneko, R. Kuroda, N. Oshima, M. Tanaka, M. Koike, A. Kinomura, H. Ogawa, N. Sei, R. Suzuki, T. Ohdaira, K. Yamada and H. Ohgaki: Recent progress in generation and application of AIST laser-Compton gamma-ray beam, Nucl. Instrum. and Methods in Phys. Res. A, 608 (1 Supp.), S41-43 (2009).

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