Huang Tzu-Feng, Tseng Sheng-Hao, Wang Hsien-Yi, Chan Ming-Che
Opt Lett. 2017 Jul 15;42(14):2790-2793. doi: 10.1364/OL.42.002790.
High modulation depth, fast (megahertz to gigahertz), intensity-modulated light sources of various wavelengths within the 0.7-1.35 μm bio-penetration window are highly desirable for many biophotonic diagnosis systems. In this Letter, we present a novel scheme of a wavelength tunable, ultra-broadband light source which simply consists of a pump laser, a nonlinear fiber, and demodulation circuits. The working wavelength range of the light source is from 0.7 to 1.35 μm which covers a vast part of the bio-penetration window, and its modulation frequencies extends from tens of megahertz to gigahertz. The performances of the proposed light source in either working wavelength range or modulation frequency bandwidth are much superior to any typical laser diodes or solid state lasers currently employed in the frequency-domain or other biophotonic utilization. The wide applicability of this novel light source in diverse biophotonic applications can be observed from our carefully designed diffused optical spectroscopy phantom measurement.
对于许多生物光子诊断系统而言,非常需要在0.7 - 1.35μm生物穿透窗口内具有高调制深度、快速(兆赫兹至吉赫兹)且波长可调的强度调制光源。在本信函中,我们提出了一种新型的波长可调超宽带光源方案,该方案仅由泵浦激光器、非线性光纤和解调电路组成。该光源的工作波长范围为0.7至1.35μm,覆盖了生物穿透窗口的大部分区域,其调制频率从几十兆赫兹延伸至吉赫兹。所提出光源在工作波长范围或调制频率带宽方面的性能均远优于目前在频域或其他生物光子应用中使用的任何典型激光二极管或固态激光器。通过我们精心设计的扩散光学光谱体模测量,可以观察到这种新型光源在各种生物光子应用中的广泛适用性。