Tu H, Liu Y, Lægsgaard J, Turchinovich D, Siegel M, Kopf D, Li H, Gunaratne T, Boppart S A
Biophotonics Imaging Laboratory, Beckman Institute for Advanced Science and Technology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Appl Phys B. 2012 Feb 1;106(2):379-384. doi: 10.1007/s00340-011-4746-2. Epub 2011 Oct 11.
The predicted spectral phase of a fiber continuum pulsed source rigorously quantified by the scalar generalized nonlinear Schrödinger equation is found to be in excellent agreement with that measured by multiphoton intra-pulse interference phase scan (MIIPS) with background subtraction. This cross-validation confirms the absolute pulse measurement by MIIPS and the transform-limited compression of the fiber continuum pulses by the pulse shaper performing the MIIPS measurement, and permits the subsequent coherent control on the fiber continuum pulses by this pulse shaper. The combination of the fiber continuum source with the MIIPS-integrated pulse shaper produces compressed transform-limited 9.6 fs (FWHM) pulses or arbitrarily shaped pulses at a central wavelength of 1020 nm, an average power over 100 mW, and a repetition rate of 76 MHz. In comparison to the 229-fs pump laser pulses that generate the fiber continuum, the compressed pulses reflect a compression ratio of 24.
通过标量广义非线性薛定谔方程严格量化的光纤连续脉冲源的预测光谱相位,与通过背景扣除的多光子脉冲内干涉相位扫描(MIIPS)测量的结果高度吻合。这种交叉验证证实了MIIPS的绝对脉冲测量以及执行MIIPS测量的脉冲整形器对光纤连续脉冲的变换极限压缩,并允许通过该脉冲整形器对光纤连续脉冲进行后续的相干控制。光纤连续光源与集成MIIPS的脉冲整形器相结合,可产生中心波长为1020 nm、平均功率超过100 mW、重复频率为76 MHz的压缩变换极限9.6 fs(半高宽)脉冲或任意形状的脉冲。与产生光纤连续光的229 fs泵浦激光脉冲相比,压缩脉冲的压缩比为24。