Chang Yu-Chung, Ye Jing Yong, Thomas Thommey, Chen Yi, Baker James R, Norris Theodore B
Center for Ultrafast Optical Science, University of Michigan, 2200 Bonisteel Blvd., Ann Arbor, MI 48109-2099, USA.
Opt Express. 2008 Aug 18;16(17):12640-9. doi: 10.1364/oe.16.012640.
We report on the utilization of a dual-clad optical fiber for two-photon excited fluorescence correlation spectroscopy (FCS). High excitation efficiency is obtained by sending prechirped ultrafast pulses through the single-mode core of the fiber, while the fluorescence collection efficiency is enhanced because of the larger numerical aperture of the inner cladding. We show that the utilization of a dual-clad fiber is critical for ultrasensitive two-photon fluorescence detection. Our system has the ability to detect fluorescent nanospheres as small as 12 nm in radius. Quantum dots of radius 7 nm are also measured and show excellent signal to noise ratio. The particle sizes obtained from the fiber FCS system were confirmed by measurements using a commercial dynamic light scattering (DLS) system.
我们报道了一种用于双光子激发荧光相关光谱(FCS)的双包层光纤的应用。通过将预啁啾超快脉冲发送通过光纤的单模纤芯可获得高激发效率,而由于内包层较大的数值孔径,荧光收集效率得到了提高。我们表明,双包层光纤的应用对于超灵敏双光子荧光检测至关重要。我们的系统能够检测半径小至12 nm的荧光纳米球。还测量了半径为7 nm的量子点,其显示出优异的信噪比。通过使用商用动态光散射(DLS)系统进行测量,证实了从光纤FCS系统获得的颗粒尺寸。