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Electron diffraction of CBr4 in superfluid helium droplets: A step towards single molecule diffraction

机译:超流氦液滴中CBr4的电子衍射:迈向单分子衍射的一步

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摘要

We demonstrate the practicality of electron diffraction of single molecules inside superfluid helium droplets using CBr4 as a testing case. By reducing the background from pure undoped droplets via multiple doping, with small corrections for dimers and trimers, clearly resolved diffraction rings of CBr4 similar to those of gas phase molecules can be observed. The experimental data from CBr4 doped droplets are in agreement with both theoretical calculations and with experimental results of gaseous species. The abundance of monomers and clusters in the droplet beam also qualitatively agrees with the Poisson statistics. Possible extensions of this approach to macromolecular ions will also be discussed. This result marks the first step in building a molecular goniometer using superfluid helium droplet cooling and field induced orientation. The superior cooling effect of helium droplets is ideal for field induced orientation, but the diffraction background from helium is a concern. This work addresses this background issue and identifies a possible solution. Accumulation of diffraction images only becomes meaningful when all images are produced from molecules oriented in the same direction, and hence a molecular goniometer is a crucial technology for serial diffraction of single molecules.
机译:我们证明了使用CBr4作为测试案例的超流体氦滴内单分子电子衍射的实用性。通过多次掺杂减少纯净未掺杂液滴的背景,对二聚体和三聚体进行较小的校正,就可以观察到清晰分辨的CBr4衍射环,类似于气相分子。 CBr4掺杂液滴的实验数据与理论计算和气态物质的实验结果均相符。液滴束中单体和簇的丰度也定性地与泊松统计一致。还将讨论这种方法对大分子离子的可能扩展。该结果标志着使用超流氦液滴冷却和场致取向构建分子测角仪的第一步。氦液滴的出色冷却效果非常适合于场致定向,但是氦的衍射背景值得关注。这项工作解决了这个背景问题,并确定了可能的解决方案。仅当所有图像均由朝向相同方向的分子产生时,衍射图像的累积才有意义,因此分子测角计是单分子系列衍射的关键技术。

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