Surface patterning and epitaxial regrowth are key technologies for novel optoelectronic (nano) devices. The aim of this thesis has been to develop a preparation of GaAs micro- and nanopatterned surfaces suited for regrowth and to study the organization of InAs quantum dots on these surfaces. The patterns have been achieved by electronic lithography in a cap resist and transferred into GaAs by chemical etching. Surface decontamination by a O2: SF6 micro-wave plasma has been demonstrated. Roughening upon in situ deoxidization has been prevented thanks to a low temperature H plasma treatment. Molecular beam epitaxy on these patterned surfaces has been studied. InAs quantum dots have been grown and lateral ordering has been attained. This prepa...
Self-assembled quantum dots (QD) of GaAs on Si-based substrates offer the possibility of combing hig...
This thesis deals with the study of GaAs surface properties and with methodology of metal (mainly go...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
Surface patterning and epitaxial regrowth are key technologies for novel optoelectronic (nano) devic...
This work presents a selective ultraviolet (UV)-ozone oxidation-chemical etching process that has be...
The subject of the present paper is application of selective chemical etching to in-vestigation of t...
This thesis focuses on two aspect of GaAs surface treatment using plasma in order to deposit control...
Compound semiconductors provide a high flexibility in band structure engineering and cover a wide sp...
We present growth and optical characterization measurements of single InAs site-controlled quantum d...
Ce mémoire porte sur deux aspects du traitement des surfaces de GaAs faisant appel à des plasmas, da...
Ce mémoire porte sur deux aspects du traitement des surfaces de GaAs faisant appel à des plasmas, da...
Semiconductor nanostructures formed by a surface modification process caused by ion sputtering is st...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
This work studies the selective nucleation of InAs within nanoholes on GaAs(001) substrates patterne...
By combination of prepatterned substrate and self-organized growth, InAs islands are grown on the st...
Self-assembled quantum dots (QD) of GaAs on Si-based substrates offer the possibility of combing hig...
This thesis deals with the study of GaAs surface properties and with methodology of metal (mainly go...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
Surface patterning and epitaxial regrowth are key technologies for novel optoelectronic (nano) devic...
This work presents a selective ultraviolet (UV)-ozone oxidation-chemical etching process that has be...
The subject of the present paper is application of selective chemical etching to in-vestigation of t...
This thesis focuses on two aspect of GaAs surface treatment using plasma in order to deposit control...
Compound semiconductors provide a high flexibility in band structure engineering and cover a wide sp...
We present growth and optical characterization measurements of single InAs site-controlled quantum d...
Ce mémoire porte sur deux aspects du traitement des surfaces de GaAs faisant appel à des plasmas, da...
Ce mémoire porte sur deux aspects du traitement des surfaces de GaAs faisant appel à des plasmas, da...
Semiconductor nanostructures formed by a surface modification process caused by ion sputtering is st...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...
This work studies the selective nucleation of InAs within nanoholes on GaAs(001) substrates patterne...
By combination of prepatterned substrate and self-organized growth, InAs islands are grown on the st...
Self-assembled quantum dots (QD) of GaAs on Si-based substrates offer the possibility of combing hig...
This thesis deals with the study of GaAs surface properties and with methodology of metal (mainly go...
Quantum dots (QDs) grown on semiconductors surfaces are actually the main researchers' interest for ...