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    • 2. 发明授权
    • Distinguishing between classes of fissionable material
    • 区分可裂变材料的类别
    • US08345812B2
    • 2013-01-01
    • US12426172
    • 2009-04-17
    • David PerticoneVitaliy Ziskin
    • David PerticoneVitaliy Ziskin
    • G21G1/08
    • H05H3/06G01V5/0091H05H6/00
    • A first pulsed beam of charged particles from a particle accelerator is accelerated toward a first target that is configured to emit a fast neutron beam in response to being struck by an accelerated particle such that the fast neutron beam is directed toward a physical region. The last neutron beam includes a neutron having an energy sufficient to cause fission in a fissionable material. Data from a sensor configured to detect radiation of a fission product is accessed, and before accelerating a second pulsed beam of charged particles, whether the physical region includes a fissionable material based on the data from the sensor is determined.
    • 来自粒子加速器的带电粒子的第一脉冲束被加速朝向被配置为响应于被加速粒子撞击而发射快中子束的第一目标而被加速,使得快中子束被引向物理区域。 快中子束包括具有足以在可裂变材料中分裂的能量的中子。 访问配置成检测裂变产物的辐射的传感器的数据,并且在加速带电粒子的第二脉冲束之前,确定基于来自传感器的数据的物理区域是否包括可裂变材料。
    • 6. 发明授权
    • Identifying fissionable material
    • 识别可裂变材料
    • US08106365B2
    • 2012-01-31
    • US12426179
    • 2009-04-17
    • David PerticoneVitaliy Ziskin
    • David PerticoneVitaliy Ziskin
    • G21G1/00
    • H05H3/06G01V5/0091H05H6/00
    • Fissionable materials are distinguished from other high-effective atomic number materials by producing dual-energy x-ray radiation sufficient to cause fission in fissionable materials and directing the dual-energy x-ray radiation sufficient to cause fission in fissionable materials towards a physical region. X-ray radiation and a product of fission from the physical region are sensed. An absorption of the dual-energy x-ray radiation by the physical region is determined based on the sensed x-ray radiation, and whether the physical region includes fissionable material is determined based on the presence of a product of fission.
    • 可裂变材料与其他高效原子序列材料不同,是通过产生足以在可裂变材料中引起裂变的双能X射线辐射,并引导足够的双能量x射线辐射使可裂变材料分裂成物理区域。 感测X射线辐射和物理区域的裂变产物。 基于感测的X射线辐射来确定物理区域的双能X射线辐射的吸收,以及基于裂变产物的存在来确定物理区域是否包括可裂变材料。