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Composite infrared bolometers with Si3N4 micromesh absorbers

机译:带有Si3N4微网吸收体的复合红外辐射热计

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摘要

We report the design and performance of 300-mK composite bolometers that use micromesh absorbers and support structures patterned from thin films of low-stress silicon nitride. The small geometrical filling factor of the micromesh absorber provides 20x reduction in heat capacity and cosmic ray cross section relative to a solid absorber with no loss in IR-absorption efficiency. The support structure is mechanically robust and has a thermal conductance, G < 2 x 10(-11) W/K, which is four times smaller than previously achieved at 300 mK. The temperature rise of the bolometer is measured with a neutron transmutation doped germanium thermistor attached to the absorbing mesh. The dispersion in electrical and thermal parameters of a sample of 12 bolometers optimized for the Sunyaev-Zel'dovich Infrared Experiment is +/-7% in R(T), +/-5% in optical efficiency, and +/-4% in G. (C) 1997 Optical Society of America
机译:我们报告了300-mK复合测辐射热计的设计和性能,该测辐射热计使用微网状吸收体和由低应力氮化硅薄膜构成的支撑结构。微网状吸收体的几何填充系数小,相对于固体吸收体,其热容和宇宙射线横截面减小了20倍,而IR吸收效率没有损失。支撑结构机械坚固,导热系数G <2 x 10(-11)W / K,比以前的300 mK小四倍。用附着在吸收网上的中子trans杂锗热敏电阻测量辐射热计的温度升高。针对Sunyaev-Zel'dovich红外实验优化的12个辐射热计的样品在电学和热学参数上的分散度是R(T)的+/- 7%,光学效率的+/- 5%和+/- 4% G.(C)1997年美国光学学会

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