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Improving femtosecond laser pulse delivery through a hollow core photonic crystal fiber for temporally focused two-photon endomicroscopy

机译:通过空心光子晶体光纤改善飞秒激光脉冲传输,用于时间聚焦的双光子内窥显微镜

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摘要

In this paper, we present a strategy to improve delivery of femtosecond laser pulses from a regenerative amplifier through a hollow core photonic crystal fiber for temporally focused wide-field two-photon endomicroscopy. For endomicroscope application, wide-field two-photon excitation has the advantage of requiring no scanning in the distal end. However, wide-field two-photon excitation requires peak power that is 10[superscript 4]–10[superscript 5] times higher than the point scanning approach corresponding to femtosecond pulses with energy on the order of 1–10 μJ at the specimen plane. The transmission of these high energy pulses through a single mode fiber into the microendoscope is a significant challenge. Two approaches were pursued to partially overcome this limitation. First, a single high energy pulse is split into a train of pulses with energy below the fiber damage threshold better utilizing the available laser energy. Second, stretching the pulse width in time by introducing negative dispersion was shown to have the dual benefit of reducing fiber damage probability and compensating for the positive group velocity dispersion induced by the fiber. With these strategy applied, 11 fold increase in the two photon excitation signal has been demonstrated.
机译:在本文中,我们提出了一种策略,用于通过时空聚焦宽视场双光子内窥镜改善飞秒激光脉冲从再生放大器通过空心光子晶体光纤的传输。对于内窥镜应用,宽视野双光子激发的优点是不需要在远端进行扫描。但是,宽场双光子激发所需的峰值功率要比与飞秒脉冲对应的点扫描方法高10 [上标4] –10 [上标5]倍,在样品面上,飞秒脉冲的能量约为1–10μJ 。这些高能量脉冲通过单模光纤传输到微内窥镜中是一个巨大的挑战。寻求两种方法来部分克服该限制。首先,将单个高能量脉冲分成一系列脉冲,能量低于光纤损坏阈值的脉冲可以更好地利用可用的激光能量。其次,通过引入负色散来及时扩展脉冲宽度被证明具有降低纤维损坏概率和补偿由纤维引起的正群速度色散的双重好处。通过应用这些策略,已证明两个光子激发信号增加了11倍。

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  • 作者

    Choi Heejin; So Peter T. C.;

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  • 年度 2014
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  • 正文语种 en_US
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