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Characterization of a Focal Plane Camera Fitted to a Mattauch-Herzog Geometry Mass Spectrograph. 2. Use with an Inductively Coupled Plasma

机译:装有Mattauch-Herzog几何质谱仪的焦平面相机的表征。 2.与感应耦合等离子体一起使用

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A novel charge-sensitive detector array, termed the focal plane camera (FPC), has been coupled to a Mattauch-Herzog mass spectrograph (MHMS) with an inductively coupled plasma ionization source. The FPC employs an array of gold Faraday cups, each with its own charge-integrating circuit that allows the simultaneous detection of several m/z ratios. The ion-sampling interface of the MHMS has been redesigned to provide better heat transfer away from the sampler and skimmer cones and to reduce the negative effects of turbulent gas flows around the plasma. The instrument has produced limits of detection in the tens to hundreds of parts per quadrillion regime and isotope ratio accuracy and precision of 5% error and 0.007% RSD, respectively. Limits of detection with the FPC are comparable to those obtained with a single-channel secondary electron multiplier (SEM). However, the isotope ratio accuracy and precision are better with the FPC than when the SEM is employed. The dynamic range has been shown to be linear over 7 orders of magnitude.
机译:一种新型的电荷敏感检测器阵列,称为焦平面相机(FPC),已与具有感应耦合等离子体电离源的Mattauch-Herzog质谱仪(MHMS)耦合。 FPC使用了一系列法拉第金杯,每个杯都有自己的电荷积分电路,可以同时检测多个m / z比率。 MHMS的离子采样界面已经过重新设计,可以更好地将热量从采样器和分离器锥中传出,并减少等离子体周围湍流的负面影响。该仪器的检测极限为每个四千万亿分之一级数十到数百个零件,同位素比的准确度和精确度分别为5%误差和0.007%RSD。 FPC的检测极限与单通道二次电子倍增器(SEM)的极限相当。但是,与采用SEM相比,FPC的同位素比精度和精确度更好。动态范围已证明在7个数量级上是线性的。

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