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    • 1. 发明授权
    • DOI type radiation detector
    • DOI型辐射探测器
    • US08436312B2
    • 2013-05-07
    • US12999041
    • 2008-10-08
    • Naoko InadamaHideo MurayamaKengo ShibuyaFumihiko NishikidoTaiga YamayaEiji Yoshida
    • Naoko InadamaHideo MurayamaKengo ShibuyaFumihiko NishikidoTaiga YamayaEiji Yoshida
    • G01T1/20
    • G01T1/1644G01T1/2008
    • This aims to provide a DOI type radiation detector in which scintillation crystals arranged two-dimensionally on a light receiving surface to form rectangular section groups in extending directions of the light receiving surface of a light receiving element are stacked up to make a three-dimensional arrangement and responses of the crystals that have detected radiation are made possible to identify at response positions on the light receiving surface, so that a three-dimensional radiation detection position can be obtained. In the DOI type radiation detector, scintillation crystals are right triangle poles extending upwards from the light receiving surface and the response positions on the light receiving surface are characterized. With this structure, DOI identification of a plurality of layers can be carried out by simply performing an Anger calculation of a light receiving element signal.
    • 其目的在于提供一种DOI型放射线检测器,其中,在光接收表面上二维布置的闪烁晶体在光接收元件的光接收表面的延伸方向上形成矩形截面组,以形成三维布置 并且能够检测到辐射的晶体的响应可以在光接收表面上的响应位置处识别,从而可以获得三维辐射检测位置。 在DOI型辐射检测器中,闪烁晶体是从光接收表面向上延伸的直角三角形磁极,并且在光接收表面上的响应位置被表征。 利用这种结构,可以通过简单地执行光接收元件信号的愤怒计算来执行多个层的DOI识别。
    • 6. 发明授权
    • Radiation detection
    • 辐射检测
    • US06787250B2
    • 2004-09-07
    • US10182924
    • 2002-07-29
    • Kengo ShibuyaMasanori KoshimizuYuko TakeokaKeisuke Asai
    • Kengo ShibuyaMasanori KoshimizuYuko TakeokaKeisuke Asai
    • G01T120
    • G01T1/2018
    • This invention relates to a radiation detection device for detecting ionizing beam discharges such as gamma rays, x-rays, electron beams, charged particle beams and neutral particle beams. Specifically, it relates to a radiation detection device which can measure radiations which exist for a very short time (of the order of subnanoseconds or less) from the appearance of photoemission to extinction. It is an object of this invention to provide a radiation detection device using a perovskite organic-inorganic hybrid compound as a scintillator, the formula of this compound being (R1—NR113)2MX4 or (R2═NR122)2MX4, or alternatively, (NR133—R3—NR133)MX4 or (NR142═R4═NR142)MX4 (in the formula, R1 is a monovalent hydrocarbon group which may contain a heterocyclic ring and may be substituted by halogen atoms, R2 is a divalent hydrocarbon group which may contain a heterocyclic ring and may be substituted by halogen atoms, and may be cyclic, R3 is a divalent hydrocarbon group which may contain a heterocyclic ring and may be substituted by halogen atoms, R4 is a tetravalent hydrocarbon group which may contain a heterocyclic ring and may be substituted by halogen atoms, R11-R14 may be identical or different, and may be hydrogen atoms or alkyl groups having two or more atoms, M is a Group IVa metal, Eu, Cd, Cu, Fe, Mn or Pd, and X is a halogen atom). This radiation detection device can quantify the radiation amount of the detected radiation.
    • 本发明涉及一种用于检测诸如γ射线,X射线,电子束,带电粒子束和中性粒子束的电离束放电的放射线检测装置。 具体地说,本发明涉及一种放射线检测装置,该放射线检测装置可以测量从光照发射到消光的非常短的时间(亚纳秒级以下)存在的辐射。本发明的目的是提供一种辐射检测装置 使用钙钛矿有机 - 无机杂化化合物作为闪烁体,该化合物的化学式为(R 1 -NR 11)2 M 2或(R 2 = NR 12)2 X 2,或者, NR 13 R 3或-NR 14 R 3 =(NR 14)= NR 4 = NR 14)MX 4(式中,R 1为单价 可以含有杂环并且可以被卤素原子取代的烃基,R 2是可以含有杂环并且可以被卤素原子取代的二价烃基,并且可以是环状,R 3是 可以含有杂环并且可以被卤素原子取代的二价烃基,R 4是可以含有杂环的四价烃基,并且可被ha取代 碱原子,R 11 -R 14可以相同或不同,可以是氢原子或具有两个或多个原子的烷基,M是Ⅳa族金属,Eu,Cd,Cu,Fe,Mn或Pd ,X为卤素原子)。 该放射线检测装置能够量化检测出的放射线的辐射量。