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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Numerical simulation for optimizing mode shaping and supercontinuum flatness of liquid filled seven-core photonic crystal fibers
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Numerical simulation for optimizing mode shaping and supercontinuum flatness of liquid filled seven-core photonic crystal fibers

机译:液体填充七芯光子晶体光纤的模式整形和超连续谱平坦度优化的数值模拟

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摘要

A seven-core photonic crystal fiber filled with commercial index-matching liquids is designed to optimize mode shaping and supercontinuum flatness. Numerical simulation of supercontinuum generation in these liquid-filled seven-core PCFs is conducted at 25 degrees C. The definition of spectral flatness measure is used to quantitatively describe SC flatness. Numerical simulations are performed to study the propagation of femtosecond pulse in the liquid-filled seven-core PCFs. Results show that mode shaping and supercontinuum flatness can be easily optimized and modified using the index-matching liquids in seven-core PCF without varying the structure of the air rings around the guiding cores. Simulations also show that 50 fs pulses with a center wavelength of 1064 nm generate relatively flat SC spectra in the 25 cm-long liquid-filled PCF. A flat spectral bandwidth of 400 nm (900-1300 nm) is achieved with an applied pump power of 30 kW. The simulation results demonstrate that using index-matching liquids to fill the inner ring of the seven-core PCF optimizes mode shaping and generates flat SC spectrum in specified wavelength region. Results further demonstrate that the SC flatness increased with increasing PCF dispersion corresponding to pump wavelength, on the premise that generated enough spectrum width, when the pump worked in the normal dispersion region. Temperature barely affects the spectrum flatness, but can affect spectrum broadening. (C) 2015 Elsevier B.V. All rights reserved.
机译:填充有商用折射率匹配液体的七芯光子晶体光纤旨在优化模式成形和超连续谱平面度。这些充液的七核PCF中产生超连续谱的数值模拟是在25摄氏度下进行的。光谱平坦度测量的定义用于定量描述SC平坦度。进行了数值模拟,以研究飞秒脉冲在充满液体的七芯PCF中的传播。结果表明,在不改变导向芯周围的空气环结构的情况下,使用七芯PCF中的折射率匹配液体可以轻松地优化和修改模式成形和超连续谱平面度。模拟还显示,中心波长为1064 nm的50 fs脉冲在25 cm长的充满液体的PCF中产生相对平坦的SC光谱。施加30 kW的泵浦功率可实现400 nm(900-1300 nm)的平坦光谱带宽。仿真结果表明,使用折射率匹配液体填充七芯PCF的内环可以优化模式整形,并在指定的波长范围内生成平坦的SC光谱。结果进一步证明,当泵浦工作在正常色散区域时,前提是在产生足够的光谱宽度的前提下,SC平坦度随与泵浦波长相对应的PCF色散的增加而增加。温度几乎不会影响光谱的平坦度,但会影响光谱的展宽。 (C)2015 Elsevier B.V.保留所有权利。

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