首页> 外文会议>International Conference on Infrared, Millimeter, and Terahertz Waves >Demonstration of an NEP of 3.8×10−19 W/Hz1/2 at 1.54 THz in multiplexible superconducting microresonator detectors
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Demonstration of an NEP of 3.8×10−19 W/Hz1/2 at 1.54 THz in multiplexible superconducting microresonator detectors

机译:在多路复用超导微谐振探测器中以1.54 THz的NEP证明为3.8×10 −19 W / Hz 1/2

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Microwave kinetic inductance detectors (MKIDs) promise high sensitivity, combined with device simplicity and intrinsic multiplexibility. We have measured the response and noise equivalent power (NEP) of an all-aluminium, antenna coupled MKID at 1.54 THz, both as a function of radiation power and as a function of readout power. Eight optical filters and a box-in-box configuration at the bath temperature, allow a large range of optical powers by varying the temperature of a black body source. In the range of 80 aW-700 fW the detector is photon-noise limited, with an optical efficiency of 48±8% for one polarisation, which is limited by the antenna design. At lower optical powers we reveal a saturation level in the NEP of 3.8×10 W/Hz, competitive with other detectors for this purpose and the lowest optical NEP so far for MKIDs. The noise over the entire power range is limited by photon- and generation-recombination noise, the fundamental noise sources for these detectors.
机译:微波动电感检测器(MKID)具有很高的灵敏度,并具有设备简单和固有的多路复用性。我们已经测量了全铝天线耦合MKID在1.54 THz时的响应和噪声等效功率(NEP),它既是辐射功率的函数,也是读出功率的函数。八个光学滤光片和在浴温下的箱内配置可通过改变黑体源的温度来实现大范围的光焦度。在80 aW-700 fW的范围内,检测器受光子噪声限制,一种极化的光效率为48±8%,这受天线设计的限制。在较低的光功率下,我们发现NEP的饱和度水平为3.8×10 W / Hz,在此方面可与其他检测器竞争,并且是迄今为止MKID的最低NEP光学水平。整个功率范围内的噪声受到光子和生成复合噪声的限制,光子和生成复合噪声是这些检测器的基本噪声源。

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