Cherednichenko Sergey, Drakinskiy Vladimir, Berg Therese, Khosropanah Pourya, Kollberg Erik
Department of Microtechnology and Nanoscience, Physical Electronics Laboratory, Chalmers University of Technology, SE-41296 Göteborg, Sweden.
Rev Sci Instrum. 2008 Mar;79(3):034501. doi: 10.1063/1.2890099.
We report on low noise terahertz mixers (1.4-1.9 THz) developed for the heterodyne spectrometer onboard the Herschel Space Observatory. The mixers employ double slot antenna integrated superconducting hot-electron bolometers (HEBs) made of thin NbN films. The mixer performance was characterized in terms of detection sensitivity across the entire rf band by using a Fourier transform spectrometer (from 0.5 to 2.5 THz, with 30 GHz resolution) and also by measuring the mixer noise temperature at a limited number of discrete frequencies. The lowest mixer noise temperature recorded was 750 K [double sideband (DSB)] at 1.6 THz and 950 K DSB at 1.9 THz local oscillator (LO) frequencies. Averaged across the intermediate frequency band of 2.4-4.8 GHz, the mixer noise temperature was 1100 K DSB at 1.6 THz and 1450 K DSB at 1.9 THz LO frequencies. The HEB heterodyne receiver stability has been analyzed and compared to the HEB stability in the direct detection mode. The optimal local oscillator power was determined and found to be in a 200-500 nW range.
我们报告了为赫歇尔空间天文台搭载的外差光谱仪开发的低噪声太赫兹混频器(1.4 - 1.9太赫兹)。这些混频器采用了集成有由薄氮化铌(NbN)薄膜制成的超导热电子测辐射热计(HEB)的双缝天线。通过使用傅里叶变换光谱仪(0.5至2.5太赫兹,分辨率为30吉赫兹)在整个射频频段测量检测灵敏度,并在有限数量的离散频率下测量混频器噪声温度,对混频器性能进行了表征。记录到的最低混频器噪声温度在1.6太赫兹时为750 K[双边带(DSB)],在1.9太赫兹本振(LO)频率下为950 K DSB。在2.4 - 4.8吉赫兹的中频带内平均,在1.6太赫兹本振频率下混频器噪声温度为1100 K DSB,在1.9太赫兹本振频率下为'1450 K DSB。对HEB外差接收器的稳定性进行了分析,并与直接检测模式下的HEB稳定性进行了比较。确定了最佳本振功率,发现其在200 - 500纳瓦范围内。