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首页> 外文期刊>Infrared physics and technology >An all-ZnO microbolometer for infrared imaging
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An all-ZnO microbolometer for infrared imaging

机译:全锌微测辐射热仪用于红外成像

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Microbolometers are extensively used for uncooled infrared imaging applications. These imaging units generally employ vanadium oxide or amorphous silicon as the active layer and silicon nitride as the absorber layer. However, using different materials for active and absorber layers increases the fabrication and integration complexity of the pixel structure. In order to reduce fabrication steps and therefore increase the yield and reduce the cost of the imaging arrays, a single layer can be employed both as the absorber and the active material. In this paper, we propose an all-ZnO microbolometer, where atomic layer deposition grown zinc oxide is employed both as the absorber and the active material. Optical constants of ZnO are measured and fed into finite-difference-time-domain simulations where absorption performances of microbolometers with different gap size and ZnO film thicknesses are extracted. Using the results of these optical simulations, thermal simulations are conducted using finite-element-method in order to extract the noise equivalent temperature difference (NETD) and thermal time constant values of several bolometer structures with different gap sizes, arm and film thicknesses. It is shown that the maximum performance of 171 mK can be achieved with a body thickness of 1.1 μm and arm thickness of 50 nm, while the fastest response with a time constant of 0.32 ms can be achieved with a ZnO thickness of 150 nm both in arms and body.
机译:微量测辐射热计广泛用于非制冷红外成像应用。这些成像单元通常采用氧化钒或非晶硅作为活性层,并采用氮化硅作为吸收层。然而,对于有源层和吸收层使用不同的材料会增加像素结构的制造和集成复杂性。为了减少制造步骤并因此提高产量并降低成像阵列的成本,可以将单层用作吸收剂和活性材料。在本文中,我们提出了一种全ZnO微量测辐射热仪,其中原子层沉积生长的氧化锌既用作吸收剂又用作活性材料。测量ZnO的光学常数,并将其输入到有限差分时域模拟中,在其中提取具有不同间隙尺寸和ZnO膜厚度的微辐射热计的吸收性能。利用这些光学模拟的结果,使用有限元方法进行热模拟,以提取具有不同间隙尺寸,臂和膜厚度的几种辐射热测量仪结构的噪声等效温度差(NETD)和热时间常数值。结果表明,在主体厚度为1.1μm,臂厚为50 nm的情况下,可以实现171 mK的最大性能,而在ZnO厚度为150 nm的情况下,可以以0.32 ms的时间常数实现最快的响应。手臂和身体。

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