Piscopo Linda, Collard Liam, Pisano Filippo, Balena Antonio, Vittorio Massimo De, Pisanello Ferruccio
Opt Express. 2024 Jul 1;32(14):24144-24155. doi: 10.1364/OE.528043.
The use of wavefront shaping has found extensive application to develop ultra-thin endoscopic techniques based on multimode optical fibers (MMF), leveraging on the ability to control modal interference at the fiber's distal end. Although several techniques have been developed to achieve MMF-based laser-scanning imaging, the use of short laser pulses is still a challenging application. This is due to the intrinsic delay and temporal broadening introduced by the fiber itself, which requires additional compensation optics on the reference beam during the calibration procedure. Here we combine the use of a supercontinuum laser and an internal reference-based wavefront shaping system to produce focused spot scanning in multiple planes at the output of a step-index multimode fiber, without the requirement of a delay line or pulse pre-compensation. We benchmarked the performances of internal vs external reference during calibration, finding that the use of an internal reference grants better focusing efficiency. The system was characterized at different wavelengths, showcasing the wavelength resiliency of the different parameters. Lastly, the scanning of focal planes beyond the fiber facet was achieved by exploiting the chromato-axial memory effect.
波前整形技术已被广泛应用于基于多模光纤(MMF)开发超薄内窥镜技术,这得益于其能够在光纤远端控制模式干涉。尽管已经开发了多种技术来实现基于MMF的激光扫描成像,但使用短激光脉冲仍然是一项具有挑战性的应用。这是由于光纤本身引入的固有延迟和时间展宽,这需要在校准过程中在参考光束上使用额外的补偿光学器件。在这里,我们结合使用超连续激光和基于内部参考的波前整形系统,在阶跃折射率多模光纤的输出端在多个平面上产生聚焦光斑扫描,而无需延迟线或脉冲预补偿。我们在校准过程中对内部参考和外部参考的性能进行了基准测试,发现使用内部参考可获得更好的聚焦效率。该系统在不同波长下进行了表征,展示了不同参数的波长弹性。最后,通过利用色轴记忆效应实现了光纤端面以外焦平面的扫描。