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Observation of X-ray and Auger electron spectra in a 4π proportional counter for 4π(e, X)-γ coincidence measurements

机译:在4π比例计数器中观察X射线和螺旋钻电子光谱的4π(e,x)-γ巧合测量

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For the standardization of electron capture nuclides followed by γ-transitions, the 4π(e, X)-γ coincidence counting method is mainly adopted. To examine how the spectra of the (e, X) channel change with gas nature and pressure, pulse-height spectrum measurements of signals from a 4π pressurized proportional counter were carried out under various conditions for ~(54)Mn and ~(88)Y sources together with 4π(e, X)-γ coincidence counting. The spectra were measured for each half of the counter and for the combined 4π signal. The nature of counting gas (P-10 or methane) and its pressure was reflected in the X-ray peak intensity, and the Auger electron spectra were influenced significantly by the absorption in a thin VYNS film and the source conditions. In the measurements, we employed a pill-box type 4π counter in which the anodes were very thin gold-coated tungsten wires (30 μm Φ). In this system, spectra down to 0.2 keV were clearly seen. The gas pressure can be raised up to 0.6 MPa. Counting electronics used for 4π(e, X)-γ coincidence measurements were conventional modules and a list mode two-parameter data acquisition system.
机译:对于电子捕获核素的标准化,然后是γ-转变,主要采用4π(e,x)-γ重合计数方法。为了检查如何用气体性质和压力的(E,X)通道的光谱如何变化,在各种条件下进行来自4π加压比例计数器的信号的脉冲高度谱测量,用于〜(54)Mn和〜(88) Y源与4π(e,x)-γ重合计数。测量光谱的计数器的每一半和组合的4π信号。计数气体(P-10或甲烷)的性质及其压力反映在X射线峰值强度中,并且通过薄Vyns膜和源条件的吸收,螺旋钻电子光谱受到影响。在测量中,我们采用了一种丸盒型4π计数器,其中阳极是非常薄的金涂覆钨丝(30μmφ)。在该系统中,清楚地看到光谱到0.2keV。气体压力可升高至0.6MPa。用于4π(e,x)-γ巧合测量的计数电子器件是常规模块和列表模式双参数数据采集系统。

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