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February 6, 20260 citationsOpen Access

Maximizing the FWM conversion efficiency in a PCF with a randomly varying pitch

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WZWei ZhangRGRafael R. GattassUnited States Naval Research LaboratoryLSL. Brandon Shaw

Key Points

  • To investigate how varying pitch in photonic crystal fibers affects four-wave mixing and the resulting conversion efficiency for visible light generation.
  • Theoretical investigation of four-wave mixing in photonic crystal fibers
  • Analysis of varying pitch along the fiber
  • Determination of optimal pitch and hole diameters for maximum efficiency
  • Maximum conversion efficiency achieved by setting the derivative of FWM wavelength with respect to pitch to zero
  • Optimal parameters found within a wavelength range of 650–850nm
  • Pump wavelength set at 1064nm enhances performance

Abstract

We theoretically investigate the generation of visible light using four-wave mixing (FWM) in photonic crystal fibers (PCFs), whose input is produced by a high-power continuous wave (CW) or quasi-CW fiber laser. We analyze the impact on the conversion efficiency of the randomly varying pitch along the fiber, which in turn leads to variations of the FWM wavelength. We show that the conversion efficiency is maximized when the mean pitch and hole diameters are chosen so that the derivative of the FWM wavelength with respect to the pitch is zero. We then use this criterion to determine the maximum conversion efficiency over a wavelength range of 650–850nm with a pump at 1064nm.

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Cite This Study

Zhang et al. (2024) studied this question.

synapsesocial.com/papers/698586238f7c464f2300a118https://doi.org/10.13016/m2bmos-rfrj
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