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Striped-phase germanene confirmed by photoemission final-state effect
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Striped-phase germanene confirmed by photoemission final-state effect

T.-Y. Chen, C.-H. Chen, D. Mikolas, S. Chiniwar, A. Huang, C.-H. Lin, C.-M. Cheng, F. Komori, I. Matsuda, C.-Y. Mou, …
Physical Review Research, 卷.6(4)
2024
Web of Science ID: WOS:001411431800001

摘要

Fermi level Gallium alloys Germanium alloys Germanium metallography Mercury amalgams Photoelectric microscopes Photoelectron spectroscopy Silver alloys Tin alloys Valence bands Zinc alloys Ag(111) Alloy phasis Angle resolved photoemission spectroscopy Bulk state Direct transition Final state Final-state effects Germanene Striped phase Transition stage Low energy electron diffraction
The formation of germanene on Ag(111) has been extensively studied and confirmed. However, the nature of the transition stage between the initial Ag2Ge alloy phase at 1/3 monolayer (ML) and the final quasifreestanding phase germanene phase at coverage ≥1 ML still remains elusive. Using angle-resolved photoemission spectroscopy, scanning-tunneling microscopy (STM), and low-energy electron diffraction, we confirm the existence of striped-phase (SP) germanene in the transition stage. Along the armchair direction of SP, the period of higher-order coincidence corresponds to 11aAC=31aAg(111), which accommodates four stripes on the bridge sites of the underlying Ag(111) lattice, as manifested in STM topography. On the electronic-structure side, the splitlike surface band of Ag2Ge centered at the surface zone boundary M¯Ag(111) evidently evolves to a steep, V-shaped interfacial-state band, characteristic of SP germanene. Moreover, an anomalous broad Ag bulk-state band was observed to fully develop upon formation of SP germanene. The bulk-state band originates from the direct transition to the final-state bands of originally d character at ∼22-23eV above the Fermi level. Because of the strong hybridization between germanene π and Ag d orbitals, the unoccupied Ag bulk final-state d bands near the interface take on pz character, inducing the direct transition from the Ag bulk occupied pz-valence band, following the selection rule for the photoemission cross section. A germanene identity of SP is thus confirmed. Our result indicates a very important missing segment of the evolution from the initial surface alloy phase to the final Xene layer, which is the coexistence of both in a common stripe lattice during a continuous transition. © 2024 authors. Published by the American Physical Society.

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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85210275064&doi=10.1103%2fPhysRevResearch.6.043190&partnerID=40&md5=1da10fc04d9973fb3acc96e2f230f625檢視
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