National Institute of Standards and Technology, 325 Broadway, Boulder, Colorado 80305, USA.
Opt Lett. 2012 Jun 15;37(12):2346-8. doi: 10.1364/OL.37.002346.
A picowatt cryogenic radiometer (PCR) has been fabricated at the microscale level for electrical substitution optical fiber power measurements. The absorber, electrical heater, and thermometer are all on a micromachined membrane less than 1 mm on a side. Initial measurements with input powers from 50 fW to 20 nW show a response inequivalence between electrical and optical power of 8%. A comparison of the response to electrical and optical input powers between 15 pW to 70 pW yields a repeatability better than ±0.3% (k=2). From our first optical tests, the system has a noise equivalent power of ≈5×10(-15) W/√Hz at 2 Hz, but simple changes to the measurement scheme should yield an NEP 2 orders of magnitude lower.
已在微尺度水平上制造出毫微瓦低温辐射计 (PCR),以用于电替代光纤功率测量。吸收器、电加热器和温度计都位于小于 1 毫米见方的微机械膜上。对于 50 fW 至 20 nW 的输入功率进行的初步测量显示,电功率和光功率之间的响应不等效度为 8%。在 15 pW 至 70 pW 的电和光输入功率之间的响应比较得出,重复性优于 ±0.3%(k=2)。根据我们的首次光学测试,该系统在 2 Hz 时的噪声等效功率约为 5×10(-15) W/√Hz,但只需对测量方案进行简单更改,就应能使 NEP 降低 2 个数量级。