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首页> 外文期刊>Applied optics >Silicon nitride micromesh bolometer array for submillimeter astrophysics
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Silicon nitride micromesh bolometer array for submillimeter astrophysics

机译:亚毫米天体物理学的氮化硅微网测辐射热计阵列

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摘要

We present the design and performance of a feedhorn-coupled bolometer array intended for a sensitive 350-μm photometer camera. Silicon nitride micromesh absorbers minimize the suspended mass and heat capacity of the bolometers. The temperature transducers, neutron-transmutation-doped Ge chermistors, are attached to the absorber with In bump bonds. Vapor-deposited electrical leads address the thermistors and determine the thermal conductance of the bolometers. The bolometer array demonstrates a dark noise-equivalent power of 2.9×10~(-17) W/√Hz and a mean heat capacity of 1.3 pJ/K at 390 mK. We measure the optical efficiency of the bolometer and feedhorn to be 0.45-0.65 by comparing the response to blackbody calibration sources. The bolometer array demonstrates theoretical noise performance arising from the photon and the phonon and Johnson noise, with photon noise dominant under the design background conditions. We measure the ratio of total noise to photon noise to be 1.21 under an absorbed optical power of 2.4 pW. Excess noise is negligible for audio frequencies as low as 30 mHz. We summarize the trade-offs between bare and feedhorn-coupled detectors and discuss the estimated performance limits of micromesh bolometers. The bolometer array demonstrates the sensitivity required for photon noise-limited performance from a spaceborne, passively cooled telescope.
机译:我们介绍了适用于灵敏的350μm光度计相机的馈入式耦合测辐射热计阵列的设计和性能。氮化硅微网吸收剂可将辐射热计的悬浮质量和热容量降至最低。温度传感器,掺杂中子的Ge chermistor,通过In凸键连接到吸收体。蒸气沉积的电引线指向热敏电阻,并确定测辐射热计的热导率。辐射热计阵列在390 mK处的等效暗噪声功率为2.9×10〜(-17)W /√Hz,平均热容为1.3 pJ / K。通过比较对黑体校准源的响应,我们将测辐射热计和馈电喇叭的光学效率测量为0.45-0.65。辐射热计阵列演示了由光子和声子以及Johnson噪声引起的理论噪声性能,在设计背景条件下,光子噪声占主导地位。在2.4 pW的吸收光功率下,我们测得总噪声与光子噪声之比为1.21。对于低至30 mHz的音频,多余的噪声可以忽略不计。我们总结了裸探头和馈入式耦合探测器之间的权衡,并讨论了微网辐射热计的估计性能极限。辐射热计阵列证明了星载被动冷却望远镜的光子噪声限制性能所需的灵敏度。

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