International audienceWe address the solid state dewetting of ultra-thin and ultra-large patches of monocrystalline silicon on insulator. We show that the underlying instability of the thin Si film under annealing can be perfectly controlled to form monocrystalline, complex nanoarchitectures extending over several microns. These complex patterns are obtained guiding the dewetting fronts by etching ad-hoc patches prior to annealing. They can be reproduced over hundreds of repetitions extending over hundreds of microns. We discuss the effect of annealing temperature and patch size on the stability of the final result of dewetting showing that for simple patches (e.g. simple squares) the final outcome is stable and well reproducible at 720°C a...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceUsing low-energy electron microscopy (LEEM), we investigate the ultrahigh vacu...
International audienceWe address the solid state dewetting of ultra-thin and ultra-large patches of ...
International audienceWe address the solid state dewetting of ultra-thin and ultra-large patches of ...
International audienceWe address the solid state dewetting of ultra-thin and ultra-large patches of ...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceThin film dewetting can be efficiently exploited for the implementation of fun...
International audienceThin film dewetting can be efficiently exploited for the implementation of fun...
Using low-energy electron microscopy movies, we have measured the dewetting dynamics of single-cryst...
International audienceUsing low-energy electron microscopy (LEEM), we investigate the ultrahigh vacu...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceUsing low-energy electron microscopy (LEEM), we investigate the ultrahigh vacu...
International audienceWe address the solid state dewetting of ultra-thin and ultra-large patches of ...
International audienceWe address the solid state dewetting of ultra-thin and ultra-large patches of ...
International audienceWe address the solid state dewetting of ultra-thin and ultra-large patches of ...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceDewetting is a ubiquitous phenomenon in nature; many different thin films of o...
International audienceThin film dewetting can be efficiently exploited for the implementation of fun...
International audienceThin film dewetting can be efficiently exploited for the implementation of fun...
Using low-energy electron microscopy movies, we have measured the dewetting dynamics of single-cryst...
International audienceUsing low-energy electron microscopy (LEEM), we investigate the ultrahigh vacu...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceIn the past decade there have been many theoretical and experimental efforts t...
International audienceUsing low-energy electron microscopy (LEEM), we investigate the ultrahigh vacu...