Centre for Biophotonics, SIPBS, University of Strathclyde, Glasgow G4 0NR, United Kingdom.
Microsc Res Tech. 2010 Jun;73(6):650-6. doi: 10.1002/jemt.20806.
The characteristics of a stable and flexible laser system based on a synchronously pumped optical parametric oscillator (OPO) is presented. This OPO can offer very stable operation with both approximately 1 ps and approximately 300 fs outputs over a broad wavelength range, i.e., 920-1200 nm. Combining the pump tuning with the OPO tuning, a total Raman range of 1900-5500 cm(-1) is accessible. For maximum spectral sensitivity, the CARS microsope based on the ps laser system is presented in detail. The lateral resolution of the microscope is diffraction limited to be about 390 nm. Fast wavelength switching (sub-second) between two Raman vibrational frequencies, i.e., 2848 cm(-1) for C--H aliphatic vibrations and 3035 cm(-1) for C--H aromatic vibrations is presented as an example, although this also extends to other Raman frequencies. The possibility of obtaining a multimodal imaging system based on the fs laser system is also discussed.
基于同步泵浦光参量振荡器 (OPO) 的稳定灵活激光系统的特点。该 OPO 可以在很宽的波长范围内提供非常稳定的操作,具有大约 1 ps 和大约 300 fs 的输出,波长范围为 920-1200nm。通过将泵浦调谐与 OPO 调谐相结合,可以获得总拉曼范围为 1900-5500 cm(-1)。为了获得最大的光谱灵敏度,详细介绍了基于 ps 激光系统的 CARS 显微镜。该显微镜的横向分辨率在衍射极限范围内,约为 390nm。虽然这也扩展到其他拉曼频率,但可以在两个 Raman 振动频率之间进行快速的波长切换(亚秒级),例如 2848cm(-1)的 C--H 脂肪族振动和 3035cm(-1)的 C--H 芳族振动。还讨论了基于 fs 激光系统获得多模态成像系统的可能性。