Yang Weijia, Bricchi Erica, Kazansky Peter G, Bovatsek James, Arai Alan Y
Opt Express. 2006 Oct 16;14(21):10117-24. doi: 10.1364/oe.14.010117.
Self-assembled, sub-wavelength periodic structures are induced in fused silica by a tightly focused, linearly polarized, femtosecond laser beam. Two different types of periodic structures, the main one with period (Lambda(E)) in the direction of the laser beam polarization and the second with period (Lambda(k)) in the direction of the light propagation, are identified from the cross-sectional images of the modified regions using scanning electron microscopy. We demonstrate the spatial coherence of these nanogratings in the plane perpendicular to the beam propagation direction. The range of effective pulse energy which could produce nanogratings narrows when the pulse repetition rate of writing laser increases. The period Lambda(E) is proportional to the wavelength of the writing laser and period Lambda(k) in the head of the modified region remains approximately the wavelength of light in fused silica.
通过紧聚焦、线偏振的飞秒激光束在熔融石英中诱导出自组装的亚波长周期性结构。使用扫描电子显微镜从改性区域的横截面图像中识别出两种不同类型的周期性结构,主要的一种在激光束偏振方向上具有周期(Λ(E)),第二种在光传播方向上具有周期(Λ(k))。我们证明了这些纳米光栅在垂直于光束传播方向的平面内的空间相干性。当写入激光的脉冲重复率增加时,能够产生纳米光栅的有效脉冲能量范围变窄。周期Λ(E)与写入激光的波长成正比,并且改性区域前端的周期Λ(k)大致保持为熔融石英中光的波长。