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Two-dimensional imaging of heavily shielded materials by NRF with laser-compton photon beam

机译:NRF与激光康普顿光子梁的二维屏蔽材料的二维成像

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Experimental demonstration of a two-dimensional imaging was done by an emission radiography method based on nuclear resonance fluorescence (NRF) and a gamma-ray spectrometry. A wedge-shaped specimen made of natural lead, which simulated a special nuclear material, hidden in a radiation-shielding box made of natural iron was prepared. A photon beam of 5600 keV was generated using an electron storage ring TERAS of AIST, via the laser Compton scattering. The photon beam was collimated to 5 mm in diameter, and incident on the specimen through the radiation-shielding box. The energy spectrum of NRF gamma-rays emerged from the specimen was measured with a high-purity germanium gamma-ray spectrometer, and the full-energy peak was analyzed. The peak intensity was measured in various position to visualize the specimen by 2-D radiograph as we scan the specimen with respect to the photon beam. We successfully obtained a 2-D radiograph of the specimen.
机译:通过基于核共振荧光(NRF)和γ射线光谱法通过发射射线照相方法进行二维成像的实验证明。 制备了一种由天然铅制成的楔形样品,其模拟了隐藏在由天然铁制成的辐射屏蔽盒中的特殊核材料。 通过激光康普顿散射,使用辅助电子储存环TER来产生5600keV的光子束。 光子束直径准直至5mm,并通过辐射屏蔽盒入射在样品上。 用高纯度锗γ射频光谱仪测量从样本中出现的NRFγ射线的能谱,并分析全能峰。 当我们扫描相对于光子束的扫描样品时,以各种位置测量峰强度以使样品的标本通过2-D射线照相。 我们成功获得了标本的2-D射线照片。

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