Self-assembled nanolines are attractive to build the technological devices of next generation, but characterizing their electronic properties is often difficult to achieve. In this work we employ angle-resolved photoemission spectroscopy and density functional theory to clarify the electronic structure exhibited by self-assembled Bi nanolines grown on the InAs(100) surface. A surface resonance associated to the reconstructed ζ(4 × 2) surface is visible in the photoemission spectra before and after the formation of the Bi nanolines. This demonstrates that Bi deposition does not necessarily drive a transition to an unreconstructed surface in the substrate, which is contrary to what was reported in previous studies. In addition, experiment and...
The growth of Bi on both the In-terminated (A) face and the As-terminated (B) face of InAs(111) has ...
The spectral density at the Fermi energy and the formation of adlayer-induced electronic states is s...
In the past decade, driven by the demand for materials with high performance for next-generation sem...
International audienceSelf-assembled nanolines are attractive to build the technological devices of ...
We have studied self-assembled bismuth (Bi) nanolines on the Bi-terminated InAs(100) surface by core...
APCOM2018 - 24th International conference Applied Physics of Condensed Matter, Štrbské Pleso, Slovaq...
A new class of material is coming up, Topological Insulators, have opened a wide field of research. ...
A new class of materials, the topological insulators, has opened a wide field of research. Bismuth, ...
L'émergence d'une une nouvelle classe de matériaux, des isolants topologiques, a stimulé un vaste ch...
International audienceThe growth of Bi on both the In-terminated (A) face and the As-terminated (B) ...
By means of scanning tunnelling microscopy and spectroscopy, we have investigated the electronic str...
A Bi 2 × n surface net was grown on the Si(001) surface and studied with inverse photoemission, scan...
Atomic nanolines are one-dimensional systems realized by assembling many atoms on a substrate into l...
The ordered p(1×1) monolayer phase of Bi on InAs(110) has been studied with the technique of angle-r...
We study the tsurface morphology and photoluminescence (PL) property of InAs quantum dots (QDs) on G...
The growth of Bi on both the In-terminated (A) face and the As-terminated (B) face of InAs(111) has ...
The spectral density at the Fermi energy and the formation of adlayer-induced electronic states is s...
In the past decade, driven by the demand for materials with high performance for next-generation sem...
International audienceSelf-assembled nanolines are attractive to build the technological devices of ...
We have studied self-assembled bismuth (Bi) nanolines on the Bi-terminated InAs(100) surface by core...
APCOM2018 - 24th International conference Applied Physics of Condensed Matter, Štrbské Pleso, Slovaq...
A new class of material is coming up, Topological Insulators, have opened a wide field of research. ...
A new class of materials, the topological insulators, has opened a wide field of research. Bismuth, ...
L'émergence d'une une nouvelle classe de matériaux, des isolants topologiques, a stimulé un vaste ch...
International audienceThe growth of Bi on both the In-terminated (A) face and the As-terminated (B) ...
By means of scanning tunnelling microscopy and spectroscopy, we have investigated the electronic str...
A Bi 2 × n surface net was grown on the Si(001) surface and studied with inverse photoemission, scan...
Atomic nanolines are one-dimensional systems realized by assembling many atoms on a substrate into l...
The ordered p(1×1) monolayer phase of Bi on InAs(110) has been studied with the technique of angle-r...
We study the tsurface morphology and photoluminescence (PL) property of InAs quantum dots (QDs) on G...
The growth of Bi on both the In-terminated (A) face and the As-terminated (B) face of InAs(111) has ...
The spectral density at the Fermi energy and the formation of adlayer-induced electronic states is s...
In the past decade, driven by the demand for materials with high performance for next-generation sem...