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Second harmonic generation from resonantly excited arrays of gold nanoparticles

机译:从金纳米粒子的共振激发阵列产生二次谐波

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We show that second harmonic generation from lithographically prepared arrays of symmetric gold nanorods can be increased by two orders of magnitude by choosing the nanoparticle size to be resonant with the 800-nm wavelength of the 50-fs pump laser. The angular variation of the second-harmonic yield, which is defined by the pitch of the nanorod array, can be predicted using standard diffraction theory. This in turn makes it possible to bound approximately the relative contributions of dipole and quadrupole oscillations to the total second-harmonic yield; the two contributions appear to be of similar magnitude. Resonant ultrafast irradiation also changes the nanorod morphology, apparently due to surface melting and refreezing. At higher fluence, the intensity dependence of the second-harmonic yield changes from quadratic to cubic, an indication that the reshaping influences the mechanism of second-harmonic generation.
机译:我们表明,通过选择与50 fs抽运激光器的800 nm波长共振的纳米颗粒尺寸,可以将光刻制备的对称金纳米棒阵列产生的二次谐波增加两个数量级。可以使用标准衍射理论预测由纳米棒阵列的间距定义的二次谐波屈服的角度变化。这进而使得可以将偶极子和四极子振荡的相对贡献近似约束到总的二次谐波屈服上。两者的贡献似乎相似。共振的超快辐照也改变了纳米棒的形态,这显然是由于表面熔化和重新冻结所致。在较高的通量下,二次谐波产量的强度依赖性从二次方变为三次方,这表明重塑影响二次谐波产生的机理。

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