Direct observation of many-body charge density oscillations in a two-dimensional electron gas

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作者
Paolo Sessi
Vyacheslav M. Silkin
Ilya A. Nechaev
Thomas Bathon
Lydia El-Kareh
Evgueni V. Chulkov
Pedro M. Echenique
Matthias Bode
机构
[1] Physikalisches Institut,Departamento de Física de Materiales
[2] Experimentelle Physik II,undefined
[3] Universität Würzburg,undefined
[4] Donostia International Physics Center (DIPC),undefined
[5] Universidad del País Vasco,undefined
[6] IKERBASQUE,undefined
[7] Basque Foundation for Science,undefined
[8] Centro de Física de Materiales CFM-Materials Physics Center MPC,undefined
[9] Centro Mixto CSIC-UPV/EHU,undefined
[10] Tomsk State University,undefined
[11] Saint Petersburg State University,undefined
[12] Wilhelm Conrad Röntgen-Center for Complex Material Systems (RCCM),undefined
[13] Universität Würzburg,undefined
来源
Nature Communications | / 6卷
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摘要
Quantum interference is a striking manifestation of one of the basic concepts of quantum mechanics: the particle-wave duality. A spectacular visualization of this effect is the standing wave pattern produced by elastic scattering of surface electrons around defects, which corresponds to a modulation of the electronic local density of states and can be imaged using a scanning tunnelling microscope. To date, quantum-interference measurements were mainly interpreted in terms of interfering electrons or holes of the underlying band-structure description. Here, by imaging energy-dependent standing-wave patterns at noble metal surfaces, we reveal, in addition to the conventional surface-state band, the existence of an ‘anomalous’ energy band with a well-defined dispersion. Its origin is explained by the presence of a satellite in the structure of the many-body spectral function, which is related to the acoustic surface plasmon. Visualizing the corresponding charge oscillations provides thus direct access to many-body interactions at the atomic scale.
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