Łaszcz Adam, Czerwinski Andrzej, Pruszyńska-Karbownik Emilia, Wzorek Marek, Szmigiel Dariusz
Łukasiewicz Research Network, Institute of Microelectronics and Photonics, Al. Lotników 32/46, 02-668 Warsaw, Poland.
Institute of Physics, Lodz University of Technology, Wólczańska 219, 90-924 Lodz, Poland.
Sensors (Basel). 2021 Dec 31;22(1):287. doi: 10.3390/s22010287.
The focused ion beam (FIB) technique was used to fabricate a nanothermocouple (with a 90 nm wide nanojunction) based on a metal-semiconductor (Pt-Si) structure, which showed a sensitivity up to 10 times larger (with Seebeck coefficient up to 140 µV/K) than typical metal-metal nanothermocouples. In contrast to the fabrication of nanothermocouples which requires a high-tech semiconductor manufacturing line with sophisticated fabrication techniques, environment, and advanced equipment, FIB systems are available in many research laboratories without the need for a high-tech environment, and the described processing is performed relatively quickly by a single operator. The linear response of the manufactured nanothermocouple enabled sensitive measurements even with small changes of temperature when heated with a stream of hot air. A nonlinear response of the nanothermocouple (up to 83.85 mV) was observed during the exposition to an argon-laser beam with a high optical power density (up to 17.4 Wcm), which was also used for the laser annealing of metal-semiconductor interfaces. The analysis of the results implies the application of such nanothermocouples, especially for the characterization of laser beams with nanometer spatial resolution. Improvements of the FIB processing should lead to an even higher Seebeck coefficient of the nanothermocouples; e.g., in case of the availability of other suitable metal sources (e.g., Cr).
聚焦离子束(FIB)技术被用于制造基于金属 - 半导体(Pt - Si)结构的纳米热电偶(具有90纳米宽的纳米结),其灵敏度比典型的金属 - 金属纳米热电偶高10倍(塞贝克系数高达140 μV/K)。与制造纳米热电偶需要配备复杂制造技术、环境和先进设备的高科技半导体生产线不同,许多研究实验室都有FIB系统,且无需高科技环境,并且所述加工由单个操作员相对快速地完成。制造的纳米热电偶的线性响应使得即使在用热气流加热时温度有小的变化也能进行灵敏测量。在暴露于具有高光功率密度(高达17.4 W/cm)的氩激光束期间,观察到纳米热电偶的非线性响应(高达83.85 mV),该激光束也用于金属 - 半导体界面的激光退火。结果分析表明这种纳米热电偶的应用,特别是用于具有纳米空间分辨率的激光束的表征。FIB加工的改进应会使纳米热电偶的塞贝克系数更高;例如,如果有其他合适的金属源(如Cr)可用的话。