论文标题

通过强场电离,超出衍射极限的雾化纳米颗粒束的表征

Characterization of an aerosolized nanoparticle beam beyond the diffraction limit through strong field ionization

论文作者

Davino, Michael, Saule, Tobias, Helming, Nora G., Powell, J. A., Trallero-Herrero, Carlos

论文摘要

纳米材料的研究是技术应用和基础科学的研究领域。研究分离的纳米颗粒特性的一种常见方法是通过空气动力学晶状体产生的空中粒子束。尽管是普遍的实践,但事实证明,这种光束的表征很难,因为光散射检测技术对于尺寸超过衍射极限的颗粒失败。在这里,我们提出了一种使用强场电离来表征此类纳米颗粒束的新技术。通过将MJ级激光聚焦到粒子梁中,激光焦点内的纳米颗粒被电离并通过其弹出电子轻松检测。该方法可直接访问焦点位置处的纳米颗粒密度,并通过通过粒子束的横向和纵向剖面扫描焦点,可以达到3维粒子密度分布。此外,我们表明强场电离可有效检测直径为10 nm的球形纳米颗粒。此外,此技术是为特定应用优化粒子光束的有效工具。例如,我们表明,可以通过限制气体流入空气动力学镜头来操纵颗粒的密度和宽度。

The study of nanomaterials is an active area of research for technological applications as well as fundamental science. A common method for studying properties of isolated nanoparticles is by an in-vacuum particle beam produced via an aerodynamic lens. Despite being common practice, characterization of such beams has proven difficult as light scattering detection techniques fail for particles with sizes beyond the diffraction limit. Here we present a new technique for characterizing such nanoparticle beams using strong field ionization. By focusing an ultrafast, mJ-level laser into the particle beam, a nanoparticle within the laser focus is ionized and easily detected by its ejected electrons. This method gives direct access to the nanoparticle density at the location of the focus and, by scanning the focus through the transverse and longitudinal profiles of the particle beam, the 3-dimensional particle density distribution can be attained. Further, we show that strong field ionization is effective in detecting spherical nanoparticles as small as 10 nm in diameter. Additionally, this technique is an effective tool in optimizing the particle beam for specific applications. As an example we show that the particle beam density and width can be manipulated by restricting the gas flow into the aerodynamic lens.

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