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High-Tc bolometers with silicon-nitride spiderwebsuspension for far-infrared detection

机译:带有氮化硅蜘蛛网悬浮液的高温测辐射热仪,用于远红外检测

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High-Tc GdBa2Cu3O7-δ (GBCO) superconducting transition edge bolometers with operating temperatures near 90 K have been made with both closed silicon-nitride membranes and patterned silicon-nitride (SiN) spiderweb-like suspension structures. As a substrate silicon-on-nitride (SON) wafers are used which are made by fusion bonding of a silicon wafer to a silicon wafer with a silicon-nitride top layer. The resulting monocrystalline silicon top layer on the silicon-nitride membranes enables the epitaxial growth of GBCO. By patterning the silicon-nitride the thermal conductance G is reduced from about 20 to 3 μW/K. The noise of both types of bolometers is dominated by the intrinsic noise from phonon fluctuations in the thermal conductance G. The optical efficiency in the far infrared is about 75% due to a goldblack absorption layer. The noise equivalent power NEP for FIR detection is 1.8 pW/√Hz, and the detectivity D* is 5.4×1010 cm √Hz/W. Time constants are 0.1 and 0.6 s, for the closed membrane and the spiderweb like bolometers respectively. The effective time constant can be reduced with about a factor 3 by using voltage bias. Further reduction necessarily results in an increase of the NEP due to the 1/f noise of the superconductor
机译:使用封闭的氮化硅膜和图案化的氮化硅(SiN)蜘蛛网状悬架结构制造了工作温度接近90 K的高TcGdBa2Cu3O7-δ(GBCO)超导过渡边缘测辐射热仪。作为衬底,使用通过将硅晶片熔融结合到具有氮化硅顶层的硅晶片而制成的氮化硅晶片(SON)。氮化硅膜上所得的单晶硅顶层使得GBCO能够外延生长。通过图案化氮化硅,热导率G从约20μW/ K降低到3μW/ K。两种测辐射热计的噪声都由热导G中声子波动引起的固有噪声控制。由于金黑吸收层,远红外的光学效率约为75%。用于FIR检测的噪声等效功率NEP为1.8 pW /√Hz,探测灵敏度D *为5.4×1010 cm√Hz/ W。对于封闭膜和类似蜘蛛网的辐射热计,时间常数分别为0.1和0.6 s。通过使用电压偏置,可以将有效时间常数降低大约3倍。由于超导体的1 / f噪声,进一步减小必然导致NEP增大。

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