通过多模光纤传送超短空间聚焦脉冲用于双光子内窥镜成像

E. Morales-Delgado, I. Papadopoulos, S. Farahi, D. Psaltis, C. Moser
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引用次数: 0

摘要

由于多模光纤支持的模数多,因此可以承载大量的时空信息。然而,光脉冲通过多模光纤的传播会由于各种出模的叠加而产生空间畸变,并且由于模色散而产生时间展宽。在这里,我们提出了一种基于数字相位共轭的方法来选择性地激发多模光纤中的特定光纤模式,这些模式在穿过光纤时遵循相似的光路。通过这种方式,它们可以在光纤输出处产生建设性干涉,从而产生超短的空间聚焦脉冲。有限数量的模的激发限制了模色散,从而允许超短脉冲的传输。我们还证明了短的空间聚焦脉冲可以在没有可移动元件的情况下进行数字扫描。实验证明,在多模光纤的输出端,脉冲产生双光子信号。我们展示了一个持续时间为500fs的1550nm脉冲的传输,空间聚焦到7微米大小的光斑,通过一个30厘米长,200微米的多模阶梯折射率光纤。我们展示了如何将这种技术应用于内窥镜双光子成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delivery of ultrashort spatially focused pulses through a multimode fiber for two photon endoscopic imaging
Due to their high number of supported modes, multimode optical fibers carry large amount of spatio-temporal information. However, propagation of a light pulse through a multimode optical fiber suffers from spatial distortions due to superposition of the various exited modes and from time broadening due to modal dispersion. Here, we present a method based on digital phase conjugation to selectively excite specific optical fiber modes in a multimode fiber that follow similar optical paths as they travel through the fiber. In this way, they can be made to interfere constructively at the fiber output to generate an ultrashort spatially focused pulse. The excitation of a limited number of modes limits modal dispersion, allowing the transmission of an ultrashort pulse. We also show that the short spatially focused pulse can be scanned digitally without movable elements. We experimentally demonstrate that the pulse at the output of the multimode fiber generate a two-photon signal. We show delivery of a 1550 nm pulse with 500 fs duration, spatially focused to a spot size of 7 micrometers, through a 30 cm long, 200 micrometers core multimode step-index fiber. We show how this technique is applied to endoscopic two-photon imaging.
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