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Efficient ultra-thin transmission silicon detectors for a single-ion irradiation system at the Lund Ion Beam Analysis Facility

机译:用于Lund离子束分析设施的单离子辐照系统的高效超薄透射硅探测器

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摘要

This paper describes the fabrication of efficient ultra-thin silicon transmission detectors for use as pre-cell detectors in single-ion experiments on living cells at the Lund Ion Beam Analysis Facility. More than 40 detectors of different thicknesses down to 5 mu m have been fabricated and packaged. The main design considerations were very low leakage current (below 9 nA) and low full depletion voltage at biases less than 0.5 V at room temperature. In addition, we have shown that cooling the device can reduce the leakage current to 3 nA. The experimental testing of the pre-cell detection system is based on counting the passage of ions through the transmission (Delta E) detector before hitting the stopping (E) detector placed behind it, to ensure the accurate delivery of specific doses of radiation to the sample. Optimal detection of the fabricated detectors for the passage of an external beam of 2.2 MeV protons was obtained by cooling the device to below 2 degrees C. Cooling the Delta E detectors provides up to 20% better energy resolution and up to 98% detection efficiency for 2.2 MeV protons. The development of this kind of efficient pre-cell detector enables a range of new experiments to be conducted on thick biological samples.
机译:本文介绍了在隆德离子束分析设施上对活细胞进行单离子实验时用作前细胞检测器的高效超薄硅透射检测器的制造方法。已经制造并包装了40多种厚度不超过5微米的探测器。主要设计考虑因素是:室温下的漏电流极低(低于9 nA),偏置电压小于0.5 V时,全耗尽电压也很低。此外,我们已经表明,冷却器件可以将泄漏电流降低至3 nA。细胞前检测系统的实验测试基于对离子通过传输(Delta E)探测器的通过进行计数,然后再撞击位于其后方的停止(E)探测器,以确保将特定剂量的辐射准确地传递到样品。通过将设备冷却到2摄氏度以下,可获得对2.2 MeV质子束通过的探测器的最佳检测。通过将Delta E探测器冷却,可以为能量探测器提供高达20%的能量分辨率和98%的探测效率2.2 MeV质子这种有效的细胞前检测器的开发使对厚生物样品的一系列新实验得以进行。

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