论文标题
在20-300 GHz频率范围内,用于高分辨率布里鲁因光谱的基于纤维的角滤波
Fiber-based angular filtering for high-resolution Brillouin spectroscopy in the 20-300 GHz frequency range
论文作者
论文摘要
布里鲁因光谱法成为用于纳米级成像和传感的有希望的非侵入性工具。一维半导体超级晶体结构非常适合在几个GHz处有选择地增强声子的产生或检测。虽然可商购的布里鲁因光谱仪提供高分辨率光谱,但它们由复杂的实验技术组成,不适用于在各种光波长范围内运行的半导体腔。我们开发了一种务实的实验方法,用于整合可调式激发源的常规布里鲁因光谱。我们的设置结合了基于单个Etalon和双光谱仪的基于纤维的角滤波和光谱滤波。这种配置允许在20-300 GHz频率范围内探测限制的声音声子模式,并具有出色的激光排斥和高光谱分辨率。值得注意的是,我们的方案基于通过光腔的增强的布里鲁因散射信号的激发和收集,可以为低声子频率提供更好的角度滤波。它可以用于研究腔光学机力的研究,并在宽带光学和声学频率范围内刺激布里鲁因散射。
Brillouin spectroscopy emerges as a promising non-invasive tool for nanoscale imaging and sensing. One-dimensional semiconductor superlattice structures are eminently used for selectively enhancing the generation or detection of phonons at few GHz. While commercially available Brillouin spectrometers provide high-resolution spectra, they consist of complex experimental techniques and are not suitable for semiconductor cavities operating at a wide range of optical wavelengths. We develop a pragmatic experimental approach for conventional Brillouin spectroscopy integrating a widely tunable excitation-source. Our setup combines a fibered-based angular filtering and a spectral filtering based on a single etalon and a double grating spectrometer. This configuration allows probing confined acoustic phonon modes in the 20-300 GHz frequency range with excellent laser rejection and high spectral resolution. Remarkably, our scheme based on the excitation and collection of the enhanced Brillouin scattering signals through the optical cavity, allows for better angular filtering for low phonon frequency. It can be implemented for the study of cavity optomechanics and stimulated Brillouin scattering over broadband optical and acoustic frequency ranges.