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首页> 外文期刊>IEEE Transactions on Nuclear Science >Microchannel Plate Imaging Detectors for High Dynamic Range Applications
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Microchannel Plate Imaging Detectors for High Dynamic Range Applications

机译:高动态范围应用的微通道板成像检测器

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Microchannel plate (MCP) imaging detectors are widely used in astronomical, biological imaging and remote sensing applications. Photon counting mode imagers with event timing can make use of the high spatial resolution (~10- 50 μm ) and very high time resolution (subnanoseconds) of MCP detectors to enhance the performance of such detectors in dynamic environments (for example airborne surveillance of moving objects, LIDAR, and 3-D topographic imaging). The total information that can be collected is limited by the dynamic range of the detector (cross delay line sensors can support detected photon rates up to ~2 MHz over the entire effective area). The ideal sensor for many applications, such as bright images or fast transient behavior, would combine the desirable attributes of high spatial and time resolution for each detected photon with event rates of 100 MHz or more. A new class of MCPs constructed using atomic layer deposition (ALD) on borosilicate glass microcapillary arrays is providing enhancements towards this goal. The ALD MCP manufacturing process decouples the operational functionalization from the substrate fabrication, opening the door for new resistive layers and high secondary emissive materials. Many improvements over traditional MCPs have been demonstrated, including robust substrates able to withstand high processing temperatures, very low background rates, high stable gains, and low outgassing. Higher global photon counting rates can be supported by ALD MCP detector schemes while greatly improving the instrument lifetime. Additionally, the robustness of these MCPs provide them with surface properties capable of supporting the deposition of a wide range of efficient photocathode materials (III-V), which require high processing temperatures (>500 C), to achieve a high quantum efficiency at near UV to near IR wavelengths. Sealed tube sensors incorporating nano-engineered MCPs can support nonproliferation and remote sensing enabling technologies by advancing the state-of the-art single-photon electro-optical remote sensing detectors. The progress of this effort, including results from the deposition of opaque photocathodes directly onto the front surface of the MCPs and the performance and lifetime characteristics of open faced and seal tube detectors, is reported here.
机译:微通道板(MCP)成像检测器广泛用于天文,生物成像和遥感应用。具有事件定时功能的光子计数模式成像仪可以利用MCP检测器的高空间分辨率(〜10-50μm)和非常高的时间分辨率(亚纳秒),以增强此类检测器在动态环境中的性能(例如,空中移动监视)物体,激光雷达和3D地形成像)。可以收集的总信息受到检测器动态范围的限制(交叉延迟线传感器可以在整个有效区域内支持高达〜2 MHz的检测到的光子速率)。对于许多应用(例如明亮的图像或快速的瞬态行为)而言,理想的传感器应结合每个检测到的光子具有100 MHz或更高事件发生率的高空间和时间分辨率的理想属性。在硼硅酸盐玻璃微毛细管阵列上使用原子层沉积(ALD)构造的一类新型MCP正在为实现这一目标提供增强。 ALD MCP制造工艺将操作功能与基板制造脱钩,为新的电阻层和高二次发射材料打开了大门。已经证明了相对于传统MCP的许多改进,包括能够承受高处理温度,非常低的本底速率,高稳定的增益和低除气的坚固基板。 ALD MCP检测器方案可以支持更高的全局光子计数率,同时可以大大延长仪器的使用寿命。此外,这些MCP的坚固性为它们提供了能够支持各种高效光电阴极材料(III-V)沉积的表面性能,这些材料需要较高的加工温度(> 500 C),才能在接近200℃时实现高量子效率紫外到近红外波长。结合了纳米工程MCP的密封管传感器可以通过推进最先进的单光子电光遥感探测器来支持防扩散和遥感使能技术。在此报告了这项工作的进展,包括不透明光电阴极直接沉积在MCP的前表面上以及敞开式和密封管检测器的性能和寿命特性。

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