The conductance across an atomically narrow metallic contact can be measured by using scanning tunneling microscopy. In certain situations, a jump in the conductance is observed right at the point of contact between the tip and the surface, which is known as “jump to contact” (JC). Such behavior provides a way to explore, at a fundamental level, how bonding between metallic atoms occurs dynamically. This phenomenon depends not only on the type of metal but also on the geometry of the two electrodes. For example, while some authors always find JC when approaching two atomically sharp tips of Cu, others find that a smooth transition occurs when approaching a Cu tip to an adatom on a flat surface of Cu. In an attempt to show that all these res...
Our analysis of the contact formation processes undergone by Au, Ag, and Cu nanojunctions reveals th...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...
The transition from tunneling to metallic contact between two surfaces does not always involve a jum...
The formation and rupture of atomic-sized contacts is modelled by means of molecular dynamics simula...
The coupling between two atomically sharp nanocontacts provides tunable access to a fundamental unde...
The coupling between two atomically sharp nanocontacts provides tunable access to a fundamental unde...
The coupling between two atomically sharp nanocontacts provides tunable access to a fundamental unde...
We investigate conductance through contacts created by pressing a hard tip, as used in scanning tunn...
Abstract. The formation and rupture of atomic-sized contacts is modelled by means of molecular dynam...
We have studied experimentally jump-to-contact (JC) and jump-out-of-contact (JOC) phenomena in gold ...
In our pursuit of ever smaller transistors, with greater computational throughput, many questions a...
We have studied experimentally jump-to-contact (JC) and jump-out-of-contact (JOC) phenomena in gold ...
We study in detail, via experimental measurements, atomistic simulations, and density functional the...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...
Our analysis of the contact formation processes undergone by Au, Ag, and Cu nanojunctions reveals th...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...
The transition from tunneling to metallic contact between two surfaces does not always involve a jum...
The formation and rupture of atomic-sized contacts is modelled by means of molecular dynamics simula...
The coupling between two atomically sharp nanocontacts provides tunable access to a fundamental unde...
The coupling between two atomically sharp nanocontacts provides tunable access to a fundamental unde...
The coupling between two atomically sharp nanocontacts provides tunable access to a fundamental unde...
We investigate conductance through contacts created by pressing a hard tip, as used in scanning tunn...
Abstract. The formation and rupture of atomic-sized contacts is modelled by means of molecular dynam...
We have studied experimentally jump-to-contact (JC) and jump-out-of-contact (JOC) phenomena in gold ...
In our pursuit of ever smaller transistors, with greater computational throughput, many questions a...
We have studied experimentally jump-to-contact (JC) and jump-out-of-contact (JOC) phenomena in gold ...
We study in detail, via experimental measurements, atomistic simulations, and density functional the...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...
Our analysis of the contact formation processes undergone by Au, Ag, and Cu nanojunctions reveals th...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...
Low-temperature scanning tunneling microscopy is used here to study the dynamic bonding of gold atom...