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Development and Studies of Novel Microfabricated Radiation Hard Scintillation Detectors with High Spatial Resolution

机译:具有高空间分辨率的新型微制辐射硬闪烁探测器的开发研究

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A new type of scintillation detector is being developed with standard microfabrication techniques. It consists of a dense array of scintillating waveguides obtained by coupling microfluidic channels filled with liquid scintillator to photodetectors. Easy manipulation of liquid scintillators inside microfluidic devices allow their flushing, renewal and exchange making the active medium intrinsically radiation hard. The detectors have been fabricated by photostructuration of a radiation hard epoxy resin (SU-8) deposited on silicon wafers and coupled to a multi-anode photomultiplier tube (MAPMT) to read out the scintillation light. They have been characterized by exciting the liquid scintillator in the 200 micrometers thick microchannels with electrons from a ~(90)Sr yielding approximately 1 photoelectron per impinging Minimum Ionizing Particle (MIP). These promising results demonstrate the concept of microfluidic scintillating detection and are very encouraging for future developments.
机译:采用标准微型制备技术开发了一种新型的闪烁探测器。它由致密的闪烁波导组成,通过耦合填充有液体闪烁体的微流体通道来获得光电探测器。易于操纵微流体装置内的液体闪烁体,允许它们的冲洗,更新和交换使得活性培养基本质上辐射难以。通过沉积在硅晶片上的辐射硬环氧树脂(SU-8)的光泽度并耦合到多阳极光电倍增管(MAPMT)来制造探测器以读出闪烁光。它们的特征在于将液体闪烁体激发在200微米厚的微通道中,通过来自A(90)SR的电子,得到约1个抗射最小电离颗粒(MIP)的光电子。这些有希望的结果表明了微流体闪烁检测的概念,并且对未来的发展非常令人鼓舞。

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