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"Jin-Tae Kim"

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"Jin-Tae Kim"

Articles
Precision Cutting and Cleaving of Optical Fiber with Femtosecond and CO₂ Laser
Ki-Dong Lim, Hun-Kook Choi, Jin-Tae Kim, Jun-Ki Lee, Ik-Bu Sohn
J. Korean Soc. Precis. Eng. 2017;34(9):633-638.
Published online September 1, 2017
DOI: https://doi.org/10.7736/KSPE.2017.34.9.633
In this study, beam divergence through an optical fiber has been controlled through shaping of the optical fiber tip using a CO₂ laser, which make the beam divergence smaller than the conventional diamond wheel cleaving method. Precise length cleaving of an optical fiber inserted in a ferrule using a femtosecond laser has also been investigated with respect to changes of the laser pulse energy. A ribbon fiber composed of 12 optical fibers could be cut precisely at different lengths in a micrometer scale.

Citations

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  • Fabrication of Lensed Optical Fibers for Biosensing Probes Using CO2 and Femtosecond Lasers
    Ki-Dong Lim, Hun-Kook Choi, Ik-Bu Sohn, Byeong-Ha Lee, Jin-Tae Kim
    Applied Sciences.2021; 11(9): 3738.     CrossRef
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Optical Analysis of Diffraction Grating and Fresnel Zone Plate Fabricated on Fused Silica Glass by a Femtosecond Laser
Jin-Chang Ryu, Jin-Tae Kim, Ik-Bu Sohn
J. Korean Soc. Precis. Eng. 2010;27(3):18-26.
Published online March 1, 2010
Diffraction gratings with precise spatial periods of 2 ㎛ and 5 ㎛ have been fabricated by using a femtosecond laser which does not have limits on materials of micromachining and small thermal effects due to high peak power. Diffraction angle and diffraction efficiency of those were measured. Simulation results of diffraction angle and diffraction efficiency of the diffraction grating calculated with the parameters such as line width, depth, and spatial period of the fabricated gratings were compared with experimental results measured with a He-Ne laser. Besides these, Fresnel Zone Plates (FZPs) with focal distances of 50 ㎜ and 25 ㎜ were fabricated and focal distances of fabricated FZP were measured. Those experimental results for diffraction gratings and FZPs match well with experimental results.
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