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Single-beam differential z-scan technique

机译:单光束差动z扫描技术

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We report a single-beam, differential z-scan technique with improved sensitivity for the determination of nonlinear absorption and refraction of materials. A sample is scanned in the direction of beam propagation as usual, but, in addition, its longitudinal position is dithered, producing a detector signal proportional to the spatial derivative of only the nonlinear transmission and therefore giving a background-free signal; the nonlinear transmission for any spatial position of the sample can be recovered by simple integration. For both open and closed aperture scans in GaP, we find an improvement in the signal-to-noise ratio of >5X compared with a balanced z-scan setup, but this can be improved with apparatus optimization. Nonlinear phase distortions
机译:我们报告了一种单光束,差分z扫描技术,具有更高的灵敏度,可用于确定材料的非线性吸收和折射。像往常一样,在光束传播方向上扫描样本,但此外,其纵向位置也会抖动,从而产生与非线性传输的空间导数成比例的检测器信号,因此会产生无背景的信号;通过简单的积分就可以恢复样品在任何空间位置的非线性传输。对于GaP中的开孔和闭孔扫描,与平衡的z扫描设置相比,我们发现信噪比提高了> 5倍,但是可以通过设备优化来改善。使用78 MHz锁模Ti:蓝宝石激光器可获得<λ/ 1500的非线性相位失真。

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