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    • 7. 发明申请
    • High-Energy Detector
    • 高能检测仪
    • US20090026371A1
    • 2009-01-29
    • US12056655
    • 2008-03-27
    • Aleksey E. BolotnikovGiuseppe CamardaYonggang CuiRalph B. James
    • Aleksey E. BolotnikovGiuseppe CamardaYonggang CuiRalph B. James
    • G01T1/00B05D5/12
    • G01T1/241
    • The preferred embodiments are directed to a high-energy detector that is electrically shielded using an anode, a cathode, and a conducting shield to substantially reduce or eliminate electrically unshielded area. The anode and the cathode are disposed at opposite ends of the detector and the conducting shield substantially surrounds at least a portion of the longitudinal surface of the detector. The conducting shield extends longitudinally to the anode end of the detector and substantially surrounds at least a portion of the detector. Signals read from one or more of the anode, cathode, and conducting shield can be used to determine the number of electrons that are liberated as a result of high-energy particles impinge on the detector. A correction technique can be implemented to correct for liberated electron that become trapped to improve the energy resolution of the high-energy detectors disclosed herein.
    • 优选实施例涉及一种使用阳极,阴极和导电屏蔽电屏蔽的高能量检测器,以大幅度地减少或消除电非屏蔽区域。 阳极和阴极设置在检测器的相对端,并且导电屏蔽件基本上围绕检测器的纵向表面的至少一部分。 导电屏蔽件纵向延伸到检测器的阳极端并且基本上围绕检测器的至少一部分。 从阳极,阴极和导电屏蔽中的一个或多个读取的信号可用于确定由于高能粒子撞击检测器而释放的电子数。 可以实施校正技术来校正被捕获的释放的电子,以提高本文公开的高能量检测器的能量分辨率。
    • 8. 发明授权
    • High-energy detector
    • 高能探测器
    • US08063378B2
    • 2011-11-22
    • US12056655
    • 2008-03-27
    • Aleksey E. BolotnikovGiuseppe CamardaYonggang CuiRalph B. James
    • Aleksey E. BolotnikovGiuseppe CamardaYonggang CuiRalph B. James
    • G01T1/24G01T1/00
    • G01T1/241
    • The preferred embodiments are directed to a high-energy detector that is electrically shielded using an anode, a cathode, and a conducting shield to substantially reduce or eliminate electrically unshielded area. The anode and the cathode are disposed at opposite ends of the detector and the conducting shield substantially surrounds at least a portion of the longitudinal surface of the detector. The conducting shield extends longitudinally to the anode end of the detector and substantially surrounds at least a portion of the detector. Signals read from one or more of the anode, cathode, and conducting shield can be used to determine the number of electrons that are liberated as a result of high-energy particles impinge on the detector. A correction technique can be implemented to correct for liberated electron that become trapped to improve the energy resolution of the high-energy detectors disclosed herein.
    • 优选实施例涉及一种使用阳极,阴极和导电屏蔽电屏蔽的高能量检测器,以大幅度地减少或消除电非屏蔽区域。 阳极和阴极设置在检测器的相对端,并且导电屏蔽件基本上围绕检测器的纵向表面的至少一部分。 导电屏蔽件纵向延伸到检测器的阳极端并且基本上围绕检测器的至少一部分。 从阳极,阴极和导电屏蔽中的一个或多个读取的信号可用于确定由于高能粒子撞击检测器而释放的电子数。 可以实施校正技术来校正被捕获的释放的电子,以提高本文公开的高能量检测器的能量分辨率。