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A microfabricated steel and glass radiation detector with inherent wireless signaling

机译:微型钢和玻璃辐射探测器,具有固有的无线信号

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摘要

This paper describes an investigation of the performance compromises imposed by a manufacturing approach that utilizes lithographic micromachining processes to fabricate a wireless beta/gamma radiation detector. The device uses in-package assembly of stainless steel electrodes and glass spacers. These elements are micromachined using photochemical etching and powder blasting, respectively. The detector utilizes a commercial, TO-5 package that is hermetically sealed at 760 Torr with an Ar fill-gas. Gas microdischarges between the electrodes, which are initiated by the radiation, transmit wideband wireless signals. The detector diameter and height are 9 and 9.6 mm, respectively, and it weighs 0.97 g. The device performance has been characterized using various sealed, radioisotope sources, e.g., 30–99 µCi from 137 Cs (which is a beta and gamma emitter) and 0.1 µCi from 90 Sr (which is a pure beta emitter). It has a measured output of >15.5 counts s _1 when in close proximity to 99 µCi from 137 Cs. The wireless signaling spans 1.25 GHz at receiving antenna-to-detector distances >89 cm, when in close proximity to a 0.1 µCi 90 Sr source. The estimated intrinsic detection efficiency (i.e. with the background rate subtracted) is 3.34% as measured with the biasing arrangement described in the paper.
机译:本文描述了对采用光刻微机械加工工艺制造无线β/γ辐射探测器的制造方法所造成的性能折衷的调查。该设备使用不锈钢电极和玻璃垫片的封装内组件。这些元素分别使用光化学蚀刻和喷粉进行微加工。该检测器采用商业化的TO-5封装,该封装在760 Torr下与Ar填充气密闭。电极之间的气体微放电(由辐射引发)会传输宽带无线信号。探测器的直径和高度分别为9毫米和9.6毫米,重0.97克。使用各种密封的放射性同位素源(例如,来自137 Cs的30–99 µCi(β和γ发射体)和来自90 Sr(纯的β发射体)的0.1 µCi)来表征器件的性能。当从137 Cs接近99 µCi时,它的测量输出为> 15.5 counts _1。当无线信号非常靠近0.1 µCi 90 Sr源时,在接收天线到检测器的距离> 89 cm时,无线信号跨越1.25 GHz。用本文中描述的偏置装置测得的估计本征检测效率(即减去背景率)为3.34%。

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