Strain energy from the lattice mismatch of a heteroepitaxial system can create "self-assembled," single-crystal islands irregularly arranged on the surface. Alternatively, features of tens of nanometers can be patterned on a substrate by "nanoimprinting" using a mold and etching. When these two techniques are combined, the small patterned features can interact with the self-assembly process, causing the islands to form at the patterned features. The resulting regular array of very small islands may be useful for future devices. The positioning of single-crystal Ge islands by Si mesas formed by nanoimprinting and etching is demonstrated in this letter
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of man...
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of ma...
The strain-induced self-assembly of suitable semiconductor pairs is an attractive natural route to ...
Spatial organization of Ge islands, grown by physical vapor deposition, on prepatterned Si(001) subs...
Surface patterning is expected to influence the nucleation site of deposited nanostructures. In the ...
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of man...
The controlled positioning of germanium (Ge) islands on silicon(111) without lithographic patterning...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
By using step-bunched Si(111) surfaces as templates, we demonstrate the self-assembly of an ordered ...
By using step-bunched Si(111) surfaces as templates, we demonstrate the self-assembly of an ordered ...
Fabrication of semiconductor quantum dot structures with a regular in-plane spatial distribution and...
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of man...
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of ma...
The strain-induced self-assembly of suitable semiconductor pairs is an attractive natural route to ...
Spatial organization of Ge islands, grown by physical vapor deposition, on prepatterned Si(001) subs...
Surface patterning is expected to influence the nucleation site of deposited nanostructures. In the ...
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of man...
The controlled positioning of germanium (Ge) islands on silicon(111) without lithographic patterning...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
By using step-bunched Si(111) surfaces as templates, we demonstrate the self-assembly of an ordered ...
By using step-bunched Si(111) surfaces as templates, we demonstrate the self-assembly of an ordered ...
Fabrication of semiconductor quantum dot structures with a regular in-plane spatial distribution and...
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of man...
Semiconductor epitaxial nanostructures have been recently proposed as the key building blocks of ma...
The strain-induced self-assembly of suitable semiconductor pairs is an attractive natural route to ...