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Generation and Amplification of Tunable Multicolored Femtosecond Laser Pulses by Using Cascaded Four-Wave Mixing in Transparent Bulk Media

机译:在透明块状介质中使用级联四波混频产生可调彩色飞秒飞秒激光脉冲的方法和放大方法

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摘要

We have reviewed the generation and amplification of wavelength-tunable multicolored femtosecond laser pulses using cascaded four-wave mixing (CFWM) in transparent bulk media, mainly concentrating on our recent work. Theoretical analysis and calculations based on the phase-matching condition could explain well the process semi-quantitatively. The experimental studies showed: (1) as many as fifteen spectral up-shifted and two spectral down-shifted sidebands were obtained simultaneously with spectral bandwidth broader than 1.8 octaves from near ultraviolet (360 nm) to near infrared (1.2 μm); (2) the obtained sidebands were spatially separated well and had extremely high beam quality with M2 factor better than 1.1; (3) the wavelengths of the generated multicolor sidebands could be conveniently tuned by changing the crossing angle or simply replacing with different media; (4) as short as 15-fs negatively chirped or nearly transform limited 20-fs multicolored femtosecond pulses were obtained when one of the two input beams was negatively chirped and the other was positively chirped; (5) the pulse energy of the sideband can reach a μJ level with power stability better than 1% RMS; (6) broadband two-dimensional (2-D) multicolored arrays with more than ten periodic columns and more than ten rows were generated in a sapphire plate; (7) the obtained sidebands could be simultaneously spectra broadened and power amplified in another bulk medium by using cross-phase modulation (XPM) in conjunction with four-wave optical parametric amplification (FOPA). The characterization showed that this is interesting and the CFWM sidebands generated by this novel method have good enough qualities in terms of power stability, beam quality, and temporal features suited to various experiments such as ultrafast multicolor time-resolved spectroscopy and multicolor-excitation nonlinear microscopy.
机译:我们已经审查了在透明块状介质中使用级联四波混频(CFWM)进行波长可调的彩色飞秒激光脉冲的产生和放大,重点是我们最近的工作。基于相位匹配条件的理论分析和计算可以很好地半定量地解释该过程。实验研究表明:(1)从近紫外(360 nm)到近红外(1.2μm),同时获得多达15个光谱上移和两个光谱下移的边带,其光谱带宽大于1.8个八度。 (2)获得的边带在空间上分离良好,光束质量极高,M 2 因子优于1.1。 (3)通过改变交叉角或简单地用不同的介质代替,可以方便地调谐产生的多色边带的波长; (4)当两个输入光束之一被负chi而另一个被正chi时,获得了短至15fs负chi或接近变换有限的20fs彩色飞秒脉冲; (5)边带的脉冲能量可以达到μJ水平,功率稳定性优于1%RMS; (6)在蓝宝石板上产生了具有十个以上周期性周期列和十多个行的宽带二维(2-D)彩色阵列; (7)通过使用交叉相位调制(XPM)与四波光学参量放大(FOPA)结合,可以同时在另一个整体介质中对获得的边带进行光谱加宽和功率放大。表征表明,这很有趣,并且通过这种新方法生成的CFWM边带在功率稳定性,光束质量和适合于各种实验(例如超快多色时间分辨光谱和多色激发非线性显微镜)的时间特性方面具有足够好的质量。 。

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