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Technical Paper

A New Nondestructive Technique Employing Multiple Scattering of Photons for Measurement of Effective Atomic Numbers of Composite Materials

Pages 118-123 | Published online: 10 Apr 2017

References

  • O. İÇELLI, “Practical Method for Experimental Effective Atomic Number in the Coherent to Compton Scattering Ratio,” J. Quant. Spectrosc. Radiat. Trans., 101, 151 (2006).
  • M. SINGH, G. SINGH, B. SINGH, and B. S. SANDHU, ‘Energy and Intensity Distributions of Multiple Compton Scattering of 0.279, 0.662, and 1.12 MeV γ-Rays,” Phys. Rev. A, 74, 042714 (2006).
  • G. SINGH, M. SINGH, B. SINGH, and B. S. SANDHU, “Experimental Observation of Z-Dependence of Saturation Depth of 0.662 MeV Multiply Scattered Gamma Rays,” Nucl. Instrum. Methods B, 251, 73 (2006).
  • J. H. HUBBELL and N. E. SCOFIELD, “Unscrambling of Gamma-Ray Scintillation Spectrometer Pulse Height Distributions,” IRE Trans. Nucl. Sci., NS-5, 156 (1958).
  • G. E. W. BAUER and P. PATTISON, “Compton Scattering Experiments at the HMI,” HMI-B 364, Hahn-Meitner-Institute Für Kernforschung (1981).
  • M. P. SINGH, B. S. SANDHU, and B. SINGH, “Measurement of Effective Atomic Number of Composite Materials Using Rayleigh to Compton Scattering of 279 keV Gamma Rays,” Phys. Scripta, 76, 281 (2007).

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