There has been a lot of effort to make Silicon optically active. In this work we examine two methods of generating nanocrystals of Silicon from bulk fragments. This approach of ours allows us to play with the shape of the nanocrystals and therefore the degeneracy of the conduction band minimum. We go on to examine whether similar sized particles with different shapes have the same physical properties, and finally whether Silicon may be rendered optically active by this route. While we do find that similar sized particles with different shapes may have different band gaps, this route of modifying the degeneracy of the conduction band minimum makes nano Si slightly optically active
New characterization techniques based on the use of local luminescence probes enable to study the pr...
International audienceWe present results on the photoluminescence PL properties of silicon nanocryst...
In this chapter we will review the photonic applications of nanos-tructured silicon. As we change th...
There has been a lot of effort to make Silicon optically active. In this work we examine two methods...
International audienceThe combination of photonics and silicon technology is a great challenge becau...
International audienceThe combination of photonics and silicon technology is a great challenge becau...
Structures measuring several nanometers in any dimension represent a transitional scale between mate...
Structures measuring several nanometers in any dimension represent a transitional scale between mate...
Silicon nanocrystals (Si-nc) is an enabling material for silicon photonics, which is no longer an em...
Silicon Photonics is an emerging field of research and technology, where nano-silicon can play a fun...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
Silicon nanocrystals (SiNCs) of sizes below approximately 5 nm are a material with an efficient room...
The transition from conventional (fossil fuel based) energy generation methods to renewable energy v...
Recent progress in the fabrication technology of silicon nanostructures has made possible observatio...
Silicon photonics is no longer an emerging field of research and technology but a present reality wi...
New characterization techniques based on the use of local luminescence probes enable to study the pr...
International audienceWe present results on the photoluminescence PL properties of silicon nanocryst...
In this chapter we will review the photonic applications of nanos-tructured silicon. As we change th...
There has been a lot of effort to make Silicon optically active. In this work we examine two methods...
International audienceThe combination of photonics and silicon technology is a great challenge becau...
International audienceThe combination of photonics and silicon technology is a great challenge becau...
Structures measuring several nanometers in any dimension represent a transitional scale between mate...
Structures measuring several nanometers in any dimension represent a transitional scale between mate...
Silicon nanocrystals (Si-nc) is an enabling material for silicon photonics, which is no longer an em...
Silicon Photonics is an emerging field of research and technology, where nano-silicon can play a fun...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
Silicon nanocrystals (SiNCs) of sizes below approximately 5 nm are a material with an efficient room...
The transition from conventional (fossil fuel based) energy generation methods to renewable energy v...
Recent progress in the fabrication technology of silicon nanostructures has made possible observatio...
Silicon photonics is no longer an emerging field of research and technology but a present reality wi...
New characterization techniques based on the use of local luminescence probes enable to study the pr...
International audienceWe present results on the photoluminescence PL properties of silicon nanocryst...
In this chapter we will review the photonic applications of nanos-tructured silicon. As we change th...