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    • 3. 发明授权
    • Photodetector and method for manufacturing it
    • 光电检测器及其制造方法
    • US6166365A
    • 2000-12-26
    • US116520
    • 1998-07-16
    • John J. SimonettiRaimund Barden
    • John J. SimonettiRaimund Barden
    • H01J43/28H01J43/04H01J43/24H01J43/06
    • H01J43/24
    • A photosensor comprises a cathode portion (111) sensitive to radiation and/or particles, an anode portion (114) receiving electrons, an evacuated channel (112, 113, 200) having the cathode portion attached to its one end portion in a vacuum-tight manner and the anode portion attached to its other end portion in a vacuum-tight manner, a conductive or semiconductive layer (107) at least partially covering the inner surface of the evacuated channel, wherein the channel is formed of a tubular member (106). A method of manufacturing a channel electron multiplier comprises the steps of forming a tubular member and a conductive or semiconductive layer at least on parts of its inner surface, forming an anode portion and sealing it to the tubular member, evacuating the tubular member, forming a cathode portion sensitive to radiation and/or particles, and sealing the cathode portion to the evacuated tubular member. The detector may at least partially be packed into a casting compound.
    • 光电传感器包括对辐射和/或颗粒敏感的阴极部分(111),接收电子的阳极部分(114),具有阴极部分的真空通道(112,113,200) 并且阳极部分以真空密封的方式附接到其另一端部,至少部分地覆盖所述抽空通道的内表面的导电或半导体层(107),其中所述通道由管状构件(106 )。 制造通道电子倍增器的方法包括以下步骤:在其内表面的至少一部分上形成管状构件和导电或半导体层,形成阳极部分并将其密封到管状构件上,抽空管状构件,形成 阴极部分对辐射和/或颗粒敏感,并将阴极部分密封到抽空的管状部件。 检测器可以至少部分地被包装到铸造化合物中。
    • 6. 发明授权
    • High temperature scintillator
    • 高温闪烁体
    • US06884994B2
    • 2005-04-26
    • US10246978
    • 2002-09-19
    • John J. SimonettiWolfgang Peter ZieglerEdward F. Durner, Jr.Catherine Danielle Marie Busser
    • John J. SimonettiWolfgang Peter ZieglerEdward F. Durner, Jr.Catherine Danielle Marie Busser
    • G01T1/203G01V5/10
    • G01T1/203G01T1/2033
    • The present invention provides scintillation material having good stability at continuous operating temperatures of at least 175° C. The scintillation material includes a cross linked copolymer with improved aromatic character that form a host plastic having properties of a thermoset polymer. The host plastic contains a primary fluorescent agent and a wavelength shifter. Preferably, the copolymer is comprised of a styrene derivative such as, for example, p-t-butylstyrene, and a higher melting point compound such as, for example, 4-vinylbiphenyl. In accordance with one aspect of the present invention, the scintillation material possesses properties of: good mechanical properties at high temperature (e.g., a Tg of about 180° C.); excellent light output (e.g., energy transfer efficiency); high hydrogen content for fast neutron detection; good optical transparency; and stable operation at temperature.
    • 本发明提供了在至少175℃的连续操作温度下具有良好稳定性的闪烁材料。闪烁材料包括具有改善的芳族特征的交联共聚物,其形成具有热固性聚合物性质的主体塑料。 主体塑料包含初级荧光剂和波长移位器。 优选地,共聚物由苯乙烯衍生物例如对叔丁基苯乙烯和较高熔点的化合物例如4-乙烯基联苯组成。 根据本发明的一个方面,闪烁材料具有以下特性:在高温下具有良好的机械性能(例如,Tg约为180℃); 良好的光输出(例如,能量传递效率); 高氢含量用于快速中子检测; 良好的光学透明度; 并在温度下稳定运行。
    • 8. 发明授权
    • Scintillator crystal materials, scintillators and subterranean detectors
    • 闪烁体晶体材料,闪烁体和地下探测器
    • US09000379B2
    • 2015-04-07
    • US13320680
    • 2010-05-20
    • John J. SimonettiDonna SimonettiAlbert HortChristian Stoller
    • John J. SimonettiDonna SimonettiAlbert HortChristian Stoller
    • G01T1/20C09K11/02C09K11/77G21K4/00G01T1/202
    • C09K11/025C09K11/772G01T1/2006G01T1/202G21K4/00G21K2004/06Y10T29/49826
    • Methods for pre-treating packaging materials of particular composition for use in conjunction with a scintillation crystal are disclosed. The packaging materials may comprise a reflecting material, an elastomer, a reflecting fluorocarbon polymer, a polymer or elastomer loaded with a reflecting inorganic powder (including a reflecting inorganic powder comprising a high reflectance material selected from the group comprising Al2O3, TiO2, BN, MgO, BaSO4 and mixtures thereof), or a highly reflective metal foil selected from the group comprising Ag and Al that is chemically compatible with the scintillator crystal. The scintillator crystal may comprise a crystal selected from the group comprising NaI(Tl), LaBr3:Ce, La—Cl3:Ce, La-halides, and La-mixed halides. The method includes subjecting a scintillator packaging material to a pre-treatment while in package form, said treatment selected from the group consisting of heating to a temperature exceeding a proposed operating temperature of the scintillator package, and placing the packaging material under pressure in a confined space until the packaging material is in final form.
    • 公开了与闪烁晶体结合使用的预处理特定组合物的包装材料的方法。 包装材料可以包括反射材料,弹性体,反射氟碳聚合物,负载有反射无机粉末的聚合物或弹性体(包括含有选自Al 2 O 3,TiO 2,BN,MgO的高反射率材料的反射无机粉末 ,BaSO 4及其混合物)或选自与闪烁体晶体化学相容的Ag和Al的高反射性金属箔。 闪烁体晶体可以包括选自由NaI(T1),LaBr3:Ce,La-Cl3:Ce,La-卤化物和La-混合卤化物组成的晶体。 该方法包括使闪烁体包装材料以包装形式进行预处理,所述处理选自加热至超过闪烁体包装的建议操作温度的温度,并将包装材料在压力下放置在约束条件 直到包装材料为最终形式。