Resan Bojan, Aviles-Espinosa Rodrigo, Kurmulis Sarah, Licea-Rodriguez Jacob, Brunner Felix, Rohrbacher Andreas, Artigas David, Loza-Alvarez Pablo, Weingarten Kurt J
Opt Express. 2014 Jun 30;22(13):16456-61. doi: 10.1364/OE.22.016456.
We developed a low-cost, low-noise, tunable, high-peak-power, ultrafast laser system based on a SESAM-modelocked, solid-state Yb tungstate laser plus spectral broadening via a microstructured fiber followed by pulse compression. The spectral selection, tuning, and pulse compression are performed with a simple prism compressor. The output pulses are tunable from 800 to 1250 nm, with the pulse duration down to 25 fs, and average output power up to 150 mW, at 80 MHz pulse repetition rate. We introduce the figure of merit (FOM) for the two-photon and multi-photon imaging (or other nonlinear processes), which is a useful guideline in discussions and for designing the lasers for an improved microscopy signal. Using a 40 MHz pulse repetition rate laser system, with twice lower FOM, we obtained high signal-to-noise ratio two-photon fluorescence images with or without averaging, of mouse intestine section and zebra fish embryo. The obtained images demonstrate that the developed system is capable of nonlinear (TPE, SHG) imaging in a multimodal operation. The system could be potentially used in a variety of other techniques including, THG, CARS and applications such as nanosurgery.
我们基于SESAM锁模固态镱钨酸盐激光器,开发了一种低成本、低噪声、可调谐、高峰值功率的超快激光系统,该系统通过微结构光纤进行光谱展宽,随后进行脉冲压缩。光谱选择、调谐和脉冲压缩通过一个简单的棱镜压缩器来实现。输出脉冲的波长在800至1250纳米之间可调,脉冲持续时间可低至25飞秒,在80兆赫兹的脉冲重复频率下,平均输出功率可达150毫瓦。我们引入了用于双光子和多光子成像(或其他非线性过程)的品质因数(FOM),这在讨论以及设计用于改善显微镜信号的激光器时是一个有用的指导原则。使用脉冲重复频率为40兆赫兹、品质因数低两倍的激光系统,我们获得了小鼠肠道切片和斑马鱼胚胎的双光子荧光图像,无论有无平均处理,均具有高信噪比。所获得的图像表明,所开发的系统能够在多模态操作中进行非线性(双光子激发荧光、二次谐波产生)成像。该系统还可能潜在地应用于包括三次谐波产生、相干反斯托克斯拉曼散射等各种其他技术以及纳米手术等应用。