We investigate the atomic structure of Sn dimer chains grown on the Si(1 0 0) surface using non-contact atomic force microscopy (NC-AFM) at cryogenic temperatures. We find that similar to the native Si(1 0 0) dimer structure, the ground state of the Sn dimer structure is buckled at low temperature. At 5 K we show that the buckling state of the Sn dimers may be controllably, and reversibly, manipulated with atomic precision by close approach of the tip, without modification of the underlying substrate buckling structure. At intermediate cryogenic temperatures we observe changes in the configuration of the dimer chains in the region where the tip-sample interaction is very weak, suggesting that the energy barrier to transit between configurat...
We report the mechanically induced formation of a silicon–hydrogen covalent bond and its application...
The dynamics of the flip-flop motion of single buckled dimers of Si(100) was elucidated by locating ...
Scanning tunneling microscopy (STM) and atomic force microscopy (AFM) of single atoms and molecules ...
We investigate the atomic structure of Sn dimer chains grown on the Si(1 0 0) surface using non-cont...
We performed imaging and manipulation of epitaxially grown Pb adatom structures on the Si(100) surfa...
Non-contact atomic force microscopy has driven the development of a variety of exciting chemomechani...
Manipulation of matter with atomic- or molecular-scale precision plays a central role in the field o...
Chemical identification of individual atoms in mixed In–Sn chains grown on a Si(100)-(2 × 1) surface...
Oral, sans d'actesInternational audienceWe studied by non-contact AFM (nc-AFM) the formation of mole...
National audienceWe studied by non-contact AFM (nc-AFM) the formation of molecular self-assemblies o...
oralNational audienceWe studied by non-contact AFM (nc-AFM) the formation of molecular self-assembli...
Cataloged from PDF version of article.Si(100)(2 x 1) surface is imaged using a new nc-AFM (non-conta...
Non-contact atomic force microscopy allows us to directly probe the interactions between atoms and m...
Mn has been found to self-assemble into atomic chains running perpendicular to the surface dimer rec...
Si(100)(2 × 1) surface is imaged using a new nc-AFM (non-contact atomic force microscopy)/STM with s...
We report the mechanically induced formation of a silicon–hydrogen covalent bond and its application...
The dynamics of the flip-flop motion of single buckled dimers of Si(100) was elucidated by locating ...
Scanning tunneling microscopy (STM) and atomic force microscopy (AFM) of single atoms and molecules ...
We investigate the atomic structure of Sn dimer chains grown on the Si(1 0 0) surface using non-cont...
We performed imaging and manipulation of epitaxially grown Pb adatom structures on the Si(100) surfa...
Non-contact atomic force microscopy has driven the development of a variety of exciting chemomechani...
Manipulation of matter with atomic- or molecular-scale precision plays a central role in the field o...
Chemical identification of individual atoms in mixed In–Sn chains grown on a Si(100)-(2 × 1) surface...
Oral, sans d'actesInternational audienceWe studied by non-contact AFM (nc-AFM) the formation of mole...
National audienceWe studied by non-contact AFM (nc-AFM) the formation of molecular self-assemblies o...
oralNational audienceWe studied by non-contact AFM (nc-AFM) the formation of molecular self-assembli...
Cataloged from PDF version of article.Si(100)(2 x 1) surface is imaged using a new nc-AFM (non-conta...
Non-contact atomic force microscopy allows us to directly probe the interactions between atoms and m...
Mn has been found to self-assemble into atomic chains running perpendicular to the surface dimer rec...
Si(100)(2 × 1) surface is imaged using a new nc-AFM (non-contact atomic force microscopy)/STM with s...
We report the mechanically induced formation of a silicon–hydrogen covalent bond and its application...
The dynamics of the flip-flop motion of single buckled dimers of Si(100) was elucidated by locating ...
Scanning tunneling microscopy (STM) and atomic force microscopy (AFM) of single atoms and molecules ...