Kanellopulos Kostas, West Robert G, Emminger Stefan, Martini Paolo, Sauer Markus, Foelske Annette, Schmid Silvan
Institute of Sensor and Actuator Systems, TU Wien, 1040 Vienna, Austria.
Analytical Instrumentation Center, TU Wien, 1060 Vienna, Austria.
Nano Lett. 2024 Sep 11;24(36):11262-11268. doi: 10.1021/acs.nanolett.4c02902. Epub 2024 Aug 30.
Understanding optical absorption in silicon nitride is crucial for cutting-edge technologies like photonic integrated circuits, nanomechanical photothermal infrared sensing and spectroscopy, and cavity optomechanics. Yet, the origin of its strong dependence on the film deposition and fabrication process is not fully understood. This Letter leverages nanomechanical photothermal sensing to investigate optical extinction κ at a 632.8 nm wavelength in low-pressure chemical vapor deposition (LPCVD) SiN strings across a wide range of deposition-related tensile stresses (200-850 MPa). Measurements reveal a reduction in κ from 10 to 10 ppm with increasing stress, correlated to variations in Si/N content ratio. Within the band-fluctuations framework, this trend indicates an increase of the energy bandgap with the stress, ultimately reducing absorption. Overall, this study showcases the power and simplicity of nanomechanical photothermal sensing for low absorption measurements, offering a sensitive, scattering-free platform for material analysis in nanophotonics and nanomechanics.
了解氮化硅中的光吸收对于光子集成电路、纳米机械光热红外传感与光谱学以及腔光力学等前沿技术至关重要。然而,其对薄膜沉积和制造工艺强烈依赖的根源尚未完全明晰。本文利用纳米机械光热传感技术,研究了在广泛的与沉积相关的拉伸应力(200 - 850 MPa)范围内,低压化学气相沉积(LPCVD)SiN 弦线在 632.8 nm 波长下的光学消光系数 κ。测量结果表明,随着应力增加,κ 从 10 降至 10 ppm,这与 Si/N 含量比的变化相关。在能带涨落框架内,这种趋势表明能带隙随应力增加,最终降低了吸收。总体而言,本研究展示了纳米机械光热传感在低吸收测量方面的强大功能和简便性,为纳米光子学和纳米力学中的材料分析提供了一个灵敏、无散射的平台。