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Visible continuum generation utilizing a hybrid optical source

机译:利用混合光源产生可见的连续体

摘要

An all-fiber supercontinuum source is formed as a hybrid combination of a first section of continuum-generating fiber (such as, for example, highly-nonlinear fiber (HNLF)) spliced to a second section of continuum-extending fiber (such as, for example, photonic crystal fiber (PCF)). The second section of fiber is selected to exhibit an anomalous dispersion value in the region of the short wavelength edge of the continuum generated by the first section of fiber. A femtosecond pulse laser source may be used to supply input pulses to the section of HNLF, and the section of PCF is spliced to the termination of the section of HNLF. A section of single mode fiber (SMF) is preferably inserted between the output of the laser source and the HNLF to compress the femtosecond pulses prior to entering the HNLF. It has been found that the hybrid combination of these two types of fibers allows for extension of the continuum on the short wavelength side—into the visible portion of the spectrum—by virtue of the first section of fiber acting as a “pump” source for the second section of fiber.
机译:全光纤超连续谱源形成为连续产生光纤的第一部分(例如,高度非线性光纤(HNLF))与连续延伸光纤的第二部分(例如,例如,光子晶体光纤(PCF)。纤维的第二部分被选择为在由纤维的第一部分产生的连续体的短波长边缘的区域中显示出异常色散值。飞秒脉冲激光源可用于向HNLF的该部分提供输入脉冲,而PCF的该部分则与HNLF的该部分的终端相连。最好在激光源的输出和HNLF之间插入一段单模光纤(SMF),以在进入HNLF之前压缩飞秒脉冲。已经发现,这两种类型的光纤的混合组合可以将短波长侧的连续谱扩展到光谱的可见部分,这是因为光纤的第一部分充当了“泵浦”源。第二节纤维。

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