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Optical fiber link for transmission of 1-nJ femtosecond laser pulses at 1550 nm

机译:用于在1550nm处传输1-nJ飞秒激光脉冲的光纤链路

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摘要

We report on numerical and experimental characterization of the performance of a fiber link optimized for the delivery of sub-100-fs laser pulses at 1550 nm over several meters of fiber. We investigate the power handling capacity of the link, and demonstrate all-fiber delivery of 1-nJ pulses over a distance of 5.3 m. The fiber link consists of dispersion-compensating fiber (DCF) and standard single-mode fiber. The optical pulses at different positions in the fiber link are measured using frequency-resolved optical gating (FROG). The results are compared with numerical simulations of the pulse propagation based on the generalized nonlinear Schrödinger equation. The high input power capacity of the fiber link allows the splitting and distribution of femtosecond pulses to an array of fibers with applications in multi-channel fiber-coupled terahertz time-domain spectroscopy and imaging systems. We demonstrate THz pulse generation and detection using a distributed fiber link with 32 channels and 2.6 nJ input pulse energy.
机译:我们报告了优化的光纤链路性能的数值和实验表征,该光纤链路可在几米长的光纤上以1550 nm的速度输送sub-100-fs激光脉冲。我们研究了链路的功率处理能力,并演示了在5.3 m的距离内全光纤传送1-nJ脉冲。光纤链路由色散补偿光纤(DCF)和标准单模光纤组成。使用频率分辨光学选通(FROG)测量光纤链路中不同位置的光脉冲。将结果与基于广义非线性Schrödinger方程的脉冲传播的数值模拟进行比较。光纤链路的高输入功率容量允许将飞秒脉冲分裂和分布到光纤阵列,并应用于多通道光纤耦合太赫兹时域光谱和成像系统中。我们演示了具有32个通道和2.6 nJ输入脉冲能量的分布式光纤链路的太赫兹脉冲产生和检测。

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