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. 2011 Sep 1;36(17):3362-4.
doi: 10.1364/OL.36.003362.

Mode-filtered large-core fiber for short-pulse delivery with reduced nonlinear effects

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Mode-filtered large-core fiber for short-pulse delivery with reduced nonlinear effects

Sucbei Moon et al. Opt Lett. .

Abstract

We present a large-core fiber (LCF) with a reduced nonlinear property for a single-mode beam delivery of intense ultrashort pulses. A tapered-fiber mode filter was fabricated in an LCF with the core diameter decreased from 20 μm to 6 μm at the tapered waist region surrounded by index-matched liquid. By the tapered geometry, the high-order mode was rejected so that our mode-filtered LCF acted as a single-mode fiber despite the multimode property of the original LCF. It has been found that this fiber class is suitable for applications, such as an endoscopic multiphoton microscope, that demand a flexible short-distance (<4 m) delivery medium of ultrashort pulses.

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Figures

Fig. 1
Fig. 1
(Color online) Schematic of the tapered-fiber mode filter that illustrates the HOM rejection.
Fig. 2
Fig. 2
(Color online) Mode-field images of the inputs and the outputs of the MF-LCF under the offset launch for the two different wavelengths, 850 nm and 1; 040 nm, respectively.
Fig. 3
Fig. 3
(Color online) Normalized radial intensity distributions of the input [(a) and (c)] and those of the output [(b) and (d)] of the MF-LCF. ΔR(r) was multiplied by 10 for better visibility in (b) and (d).
Fig. 4
Fig. 4
(Color online) Measured short-pulse spectra after being transmitted through the SMF (a) and our MF-LCF (b), respectively, displayed together with the mode-field images of the SMF, MF-LCF and the LMA-PCF acquired at λ = 850 nm (c).

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