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Radio-frequency excitation of single molecules by scanning tunnelling microscopy

机译:扫描隧道显微镜对单分子的射频激发

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We have upgraded a low-temperature scanning tunnelling microscope (STM) with a radio-frequency (RF) modulation system to extend STM spectroscopy to the range of low energy excitations (<1 meV). We studied single molecules of a stable hydrocarbon πradical weakly physisorbed on Au(111). At 5 K thermal excitation of the adsorbed molecules is inhibited due to the lack of short-wavelength phonons of the substrate. We demonstrate resonant excitation of mechanical modes of single molecules by RF tunnelling at 115 MHz, which induces structural changes in the molecule ranging from controlled diffusion and modification of bond angles to bond breaking as the ultimate climax (resonance catastrophe). Our results pave the way towards RF-STM-based spectroscopy and controlled manipulation of molecular nanostructures on a surface.
机译:我们已经升级了带有射频(RF)调制系统的低温扫描隧道显微镜(STM),以将STM光谱学扩展到低能量激发(<1 meV)的范围。我们研究了弱分子吸附在Au(111)上的稳定烃π自由基的单分子。在5 K下,由于缺少底物的短波长声子,抑制了吸附分子的热激发。我们展示了通过在115 MHz处的RF隧穿来激发单个分子的机械模式的共振激发,这诱发了分子的结构变化,范围从受控的扩散和键角的改变到键的断裂成为最终的高潮(共振灾难)。我们的结果为基于RF-STM的光谱学和表面上的分子纳米结构的受控操纵铺平了道路。

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