The app described in this article was presented at the student design competition of the 2016 I Microwave Theory and Techniques Society (MTT-S) International Microwave Symposium. As sponsored by Technical Committee MTT-25 on F nanotechnology, the competition's objective was to develop user-friendly interfaces to facilitate the design and application of F nanotechnology. To this end, the app is capable of simulating the capacitance and charge distribution of the probe-sample interaction on a nanoscale in near-field scanning microscopes, such as the scanning microwave microscope (SMM), the atomic force microscope (AFM), and the scanning tunneling microscope (STM)
This thesis discusses the development of a novel scanning capacitance microscope (SCM) that enables ...
\ua9 2019, The Author(s). The microwave properties of nano-scale structures are important in a wide ...
International audienceA near-field scanning millimeter-wave frequency microscope built inside a scan...
The app described in this article was presented at the student design competition of the 2016 I Micr...
Scanning Microwave Microscopy (SMM) is a nanoscale imaging technique that combines the lateral resol...
International audienceThe main objectives of this work are the development of fundamental extensions...
We report recent advances in material characterization on the nanometer scale using scanning microwa...
PhD ThesesWhile we are gradually approaching the fundamental limit of integrated circuits in classi...
International audienceA novel toolbox for hybrid nanoscale material characterization is presented. T...
The authors would like to thank professor Dr. Gabriel Gomila from Institut de Bioenginyeria de Catal...
A near-field scanning millimeter-wave microscope (NSMM) integrated in a scanning electron microscope...
The advent of Atomic Force Microscopy (AFM) has allowed researchers to probe materials on the atomic...
In this thesis, we address the design and application of a microscope and probes for near-field scan...
Nous présentons une méthode pour caractériser des nanocapacités sub-10 nm de diamètre et des nanotra...
A novel Near-Field Scanning Microwave Microscope (NSMM) has been developed where a Scanning Tunnelin...
This thesis discusses the development of a novel scanning capacitance microscope (SCM) that enables ...
\ua9 2019, The Author(s). The microwave properties of nano-scale structures are important in a wide ...
International audienceA near-field scanning millimeter-wave frequency microscope built inside a scan...
The app described in this article was presented at the student design competition of the 2016 I Micr...
Scanning Microwave Microscopy (SMM) is a nanoscale imaging technique that combines the lateral resol...
International audienceThe main objectives of this work are the development of fundamental extensions...
We report recent advances in material characterization on the nanometer scale using scanning microwa...
PhD ThesesWhile we are gradually approaching the fundamental limit of integrated circuits in classi...
International audienceA novel toolbox for hybrid nanoscale material characterization is presented. T...
The authors would like to thank professor Dr. Gabriel Gomila from Institut de Bioenginyeria de Catal...
A near-field scanning millimeter-wave microscope (NSMM) integrated in a scanning electron microscope...
The advent of Atomic Force Microscopy (AFM) has allowed researchers to probe materials on the atomic...
In this thesis, we address the design and application of a microscope and probes for near-field scan...
Nous présentons une méthode pour caractériser des nanocapacités sub-10 nm de diamètre et des nanotra...
A novel Near-Field Scanning Microwave Microscope (NSMM) has been developed where a Scanning Tunnelin...
This thesis discusses the development of a novel scanning capacitance microscope (SCM) that enables ...
\ua9 2019, The Author(s). The microwave properties of nano-scale structures are important in a wide ...
International audienceA near-field scanning millimeter-wave frequency microscope built inside a scan...