Freudiger Christian W, Yang Wenlong, Holtom Gary R, Peyghambarian Nasser, Xie X Sunney, Kieu Khanh Q
INVENIO IMAGING, Inc., Menlo Park, California 94025 (USA) ; Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138 (USA).
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138 (USA).
Nat Photonics. 2014 Feb 1;8(2):153-159. doi: 10.1038/nphoton.2013.360.
Stimulated Raman Scattering microscopy allows label-free chemical imaging and has enabled exciting applications in biology, material science, and medicine. It provides a major advantage in imaging speed over spontaneous Raman scattering and has improved image contrast and spectral fidelity compared to coherent anti-Stokes Raman. Wider adoption of the technique has, however, been hindered by the need for a costly and environmentally sensitive tunable ultra-fast dual-wavelength source. We present the development of an optimized all-fibre laser system based on the optical synchronization of two picosecond power amplifiers. To circumvent the high-frequency laser noise intrinsic to amplified fibre lasers, we have further developed a high-speed noise cancellation system based on voltage-subtraction autobalanced detection. We demonstrate uncompromised imaging performance of our fibre-laser based stimulated Raman scattering microscope with shot-noise limited sensitivity and an imaging speed up to 1 frame/s.
受激拉曼散射显微镜可实现无标记化学成像,并已在生物学、材料科学和医学领域带来了令人兴奋的应用。与自发拉曼散射相比,它在成像速度上具有显著优势,与相干反斯托克斯拉曼相比,图像对比度和光谱保真度也有所提高。然而,该技术的更广泛应用受到了对昂贵且对环境敏感的可调谐超快双波长光源需求的阻碍。我们展示了一种基于两个皮秒功率放大器光学同步的优化全光纤激光系统的开发。为了规避放大光纤激光器固有的高频激光噪声,我们进一步开发了一种基于电压减法自动平衡检测的高速噪声消除系统。我们展示了基于光纤激光的受激拉曼散射显微镜具有不妥协的成像性能,其灵敏度受散粒噪声限制,成像速度高达每秒1帧。