A single line of dangling bonds (DBs) on Si(100)-2 × 1:H surface forms a perfect metallic atomic-wire. In this work, we investigate quantum transport properties of such dangling bond wires (DBWs) by a state-of-the-art first-principles technique. It is found that the conductance of the DBW can be gated by electrostatic potential and orbital overlap due to only a single DB center (DBC) within a distance of ∼16 Å from the DBW. The gating effect is more pronounced for two DBCs and especially, when these two DB “gates” are within ∼3.9 Å from each other. These effective length scales are in excellent agreement with those measured in scanning tunnelling microscope experiments. By analyzing transmission spectrum and density of states of DBC–DBW sys...
A dangling bond (DB) on a silicon surface atomic has been found to behave as an atomic-scale quantum...
The Ga/Si(1 1 2) interface consists of a self-assembled, mesoscopic array of atomic wires on a hig...
[[abstract]]The Ga/Si(1 1 2) interface consists of a self-assembled, mesoscopic array of “atomic wir...
A single line of dangling bonds (DBs) on Si(100)-2 7 1:H surface forms a perfect metallic atomic-wi...
cited By 11International audienceWe compute the electron transmission through different types of dan...
cited By 11International audienceWe compute the electron transmission through different types of dan...
On a Si(001)-(2x1)-H substrate, electrons tunneling through hydrogen atomic junctions fabricated bet...
On a Si(001)-(2x1)-H substrate, electrons tunneling through hydrogen atomic junctions fabricated bet...
Quantum wires, as a smallest electronic conductor, are expected to be a fundamental component in all...
cited By 1International audienceWe theoretically investigate charge transport through dangling bond ...
cited By 1International audienceWe theoretically investigate charge transport through dangling bond ...
cited By 1International audienceWe theoretically investigate charge transport through dangling bond ...
We study both experimentally and theoretically the electronic behavior of dangling bonds (DBs) at a ...
cited By 21International audienceSurface-state engineering strategies for atomic-size interconnects ...
cited By 1International audienceSingle dangling bonds created on a Si(001):H surface have emerged as...
A dangling bond (DB) on a silicon surface atomic has been found to behave as an atomic-scale quantum...
The Ga/Si(1 1 2) interface consists of a self-assembled, mesoscopic array of atomic wires on a hig...
[[abstract]]The Ga/Si(1 1 2) interface consists of a self-assembled, mesoscopic array of “atomic wir...
A single line of dangling bonds (DBs) on Si(100)-2 7 1:H surface forms a perfect metallic atomic-wi...
cited By 11International audienceWe compute the electron transmission through different types of dan...
cited By 11International audienceWe compute the electron transmission through different types of dan...
On a Si(001)-(2x1)-H substrate, electrons tunneling through hydrogen atomic junctions fabricated bet...
On a Si(001)-(2x1)-H substrate, electrons tunneling through hydrogen atomic junctions fabricated bet...
Quantum wires, as a smallest electronic conductor, are expected to be a fundamental component in all...
cited By 1International audienceWe theoretically investigate charge transport through dangling bond ...
cited By 1International audienceWe theoretically investigate charge transport through dangling bond ...
cited By 1International audienceWe theoretically investigate charge transport through dangling bond ...
We study both experimentally and theoretically the electronic behavior of dangling bonds (DBs) at a ...
cited By 21International audienceSurface-state engineering strategies for atomic-size interconnects ...
cited By 1International audienceSingle dangling bonds created on a Si(001):H surface have emerged as...
A dangling bond (DB) on a silicon surface atomic has been found to behave as an atomic-scale quantum...
The Ga/Si(1 1 2) interface consists of a self-assembled, mesoscopic array of atomic wires on a hig...
[[abstract]]The Ga/Si(1 1 2) interface consists of a self-assembled, mesoscopic array of “atomic wir...