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Materials and process development for the fabrication of far ultraviolet device-integrated filters for visible-blind Si sensors

机译:用于制造可见光Si传感器的远紫外器件集成滤光片的材料和工艺开发

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In this work, we show that the direct integration of ultraviolet metal-dielectric filters with Si sensors can improve throughput over external filter approaches, and yield devices with UV quantum efficiencies greater than 50%, with rejection ratios of visible light greater than 103. In order to achieve these efficiencies, two-dimensional doping methods are used to increase the UV sensitivity of back-illuminated Si sensors. Integrated filters are then deposited by a combination of Al evaporation and atomic layer deposition of dielectric spacer layers. At far UV wavelengths these filters require the use of non-absorbing dielectrics, and we have pursued the development of new atomic layer deposition processes for metal fluorides materials of MgF_2, AlF_3 and LiF. The performance of the complete multilayer filters on Si photodiodes and CCD imaging sensors, and the design and fabrication challenges associated with this development are demonstrated. This includes the continued development of deep diffused silicon avalanche photodiodes designed to detect the fast 220 ran emission component of barium fluoride scintillation crystals, while optically rejecting a slower component at 300 nm.
机译:在这项工作中,我们表明,将紫外线金属电介质滤光片与Si传感器直接集成在一起,可以比外部滤光片方法提高通量,并且可以产生具有大于50%的UV量子效率且可见光的拒绝率大于103的器件。为了实现这些效率,使用二维掺杂方法来增加背照式Si传感器的UV灵敏度。然后通过Al蒸发和介电间隔层的原子层沉积的组合来沉积集成滤波器。在远紫外线波长下,这些滤光片要求使用非吸收性电介质,因此我们一直致力于开发用于MgF_2,AlF_3和LiF的金属氟化物材料的新原子层沉积工艺。演示了完整的多层滤光片在Si光电二极管和CCD成像传感器上的性能,以及与该开发相关的设计和制造挑战。这包括不断发展的深扩散硅雪崩光电二极管,其设计用于检测氟化钡闪烁晶体的快速220 ran发射成分,同时在300 nm处光学拒绝较慢的成分。

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