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由针尖门控放电触发的Ag(111)表面分子中电子-振动耦合的强烈特征。

Strong signature of electron-vibration coupling in molecules on Ag(111) triggered by tip-gated discharging.

作者信息

Li Chao, Kaspar Christoph, Zhou Ping, Liu Jung-Ching, Chahib Outhmane, Glatzel Thilo, Häner Robert, Aschauer Ulrich, Decurtins Silvio, Liu Shi-Xia, Thoss Michael, Meyer Ernst, Pawlak Rémy

机构信息

Department of Physics, University of Basel, Klingelbergstrasse 82, 4056, Basel, Switzerland.

Institute of Physics, University of Freiburg, Hermann-Herder-Strasse 3, 79104, Freiburg, Germany.

出版信息

Nat Commun. 2023 Sep 25;14(1):5956. doi: 10.1038/s41467-023-41601-2.

Abstract

Electron-vibration coupling is of critical importance for the development of molecular electronics, spintronics, and quantum technologies, as it affects transport properties and spin dynamics. The control over charge-state transitions and subsequent molecular vibrations using scanning tunneling microscopy typically requires the use of a decoupling layer. Here we show the vibronic excitations of tetrabromotetraazapyrene (TBTAP) molecules directly adsorbed on Ag(111) into an orientational glassy phase. The electron-deficient TBTAP is singly-occupied by an electron donated from the substrate, resulting in a spin 1/2 state, which is confirmed by a Kondo resonance. The TBTAP discharge is controlled by tip-gating and leads to a series of peaks in scanning tunneling spectroscopy. These occurrences are explained by combining a double-barrier tunneling junction with a Franck-Condon model including molecular vibrational modes. This work demonstrates that suitable precursor design enables gate-dependent vibrational excitations of molecules on a metal, thereby providing a method to investigate electron-vibration coupling in molecular assemblies without a decoupling layer.

摘要

电子-振动耦合对于分子电子学、自旋电子学和量子技术的发展至关重要,因为它会影响输运性质和自旋动力学。使用扫描隧道显微镜控制电荷态跃迁及随后的分子振动通常需要使用去耦层。在此我们展示了直接吸附在Ag(111)上进入取向玻璃态的四溴四氮杂芘(TBTAP)分子的振动激发。缺电子的TBTAP被从衬底捐赠的一个电子单占据,导致自旋1/2态,这通过近藤共振得到证实。TBTAP的放电通过针尖门控来控制,并在扫描隧道谱中导致一系列峰。通过将双势垒隧穿结与包括分子振动模式的弗兰克-康登模型相结合来解释这些现象。这项工作表明,合适的前驱体设计能够实现金属上分子的栅极依赖型振动激发,从而提供一种在没有去耦层的情况下研究分子组装体中电子-振动耦合的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d72f/10519934/45b54423e7db/41467_2023_41601_Fig1_HTML.jpg

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