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首页> 外文期刊>IEEE Transactions on Nuclear Science >Average energy needed to produce an electron-hole pair in GaSe nuclear particle detectors
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Average energy needed to produce an electron-hole pair in GaSe nuclear particle detectors

机译:在GaSe核粒子探测器中产生电子-空穴对所需的平均能量

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摘要

Gallium selenide (GaSe) detectors, which were fabricated by evaporating small electrodes of various metal films (Au, Al, In, In+Hg, Ag, and Sn) onto 50- to 150- mu m-thick plates cleaved from Bridgman-grown crystals, have been tested. One detector exhibited pulse heights that corresponded to 4.5 eV, possibly 4.0 to 4.3 eV, as an average energy necessary to produce an electron-hole pair for 5.5-MeV alpha-particle irradiation. These measured values are smaller than the 6.3 eV predicted by the Klein formula.
机译:硒化镓(GaSe)检测器是通过将各种金属膜(Au,Al,In,In + Hg,Ag和Sn)的小电极蒸发到从Bridgman生长的50至150μm厚的板上制成的晶体,已经过测试。一个探测器表现出的脉冲高度相当于4.5 eV,可能是4.0至4.3 eV,作为产生5.5-MeVα-粒子辐照的电子-空穴对所需的平均能量。这些测量值小于克莱因公式预测的6.3 eV。

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