Among the many remarkable properties of diamond, the ability to superconduct when heavily doped with boron has attracted much interest in the carbon community. When considering the nanocrystalline boron doped system, the reduced dimensionality and confinement effects have led to several intriguing observations most notably, signatures of a mixed superconducting phase. Here we present ultra-high-resolution transmission electron microscopy imaging of the grain boundary and demonstrate how the complex microstructure leads to enhanced carrier correlations. We observe hallmark features of spin–orbit coupling (SOC) manifested as the weak anti-localization effect. The enhanced SOC is believed to result from a combination of inversion symmetry brea...
The doping-induced metal-insulator transition (MIT) and superconductivity has been studied in highly...
The magnetic field dependence of the superconductivity in nanocrystalline boron doped diamond thin f...
The widely known allotropes of carbon are graphite, diamond and amorphous carbon. Out of these, in i...
Scanning tunneling topography and spectroscopy are performed below 100 mK on granular nanocrystallin...
International audienceScanning tunneling spectroscopies are performed below 100~mK on nano-crystalli...
Scanning tunneling spectroscopies are performed below 100 mK on polycrystalline boron-doped diamond ...
International audienceThe low temperature electronic transport of highly boron-doped nanocrystalline...
We report on low-temperature scanning tunneling microscopy/spectroscopy experiments performed on sup...
We have grown and investigated bulk single-crystal heavily boron-doped diamonds possessing supercond...
In this paper, we report on the transport properties of nanostructured boron doped diamond thin film...
The combination of different exotic properties in materials paves the way for the emergence of their...
Heavily Boron-doped MPCVD-grown (Microwave Plasma Chemical Vapour Deposition) polycrystalline diamo...
Heavily Boron-doped MPCVD-grown (Microwave Plasma Chemical Vapour Deposition) polycrystalline diamon...
The doping-induced metal-insulator transition (MIT) and superconductivity has been studied in highly...
The magnetic field dependence of the superconductivity in nanocrystalline boron doped diamond thin f...
The widely known allotropes of carbon are graphite, diamond and amorphous carbon. Out of these, in i...
Scanning tunneling topography and spectroscopy are performed below 100 mK on granular nanocrystallin...
International audienceScanning tunneling spectroscopies are performed below 100~mK on nano-crystalli...
Scanning tunneling spectroscopies are performed below 100 mK on polycrystalline boron-doped diamond ...
International audienceThe low temperature electronic transport of highly boron-doped nanocrystalline...
We report on low-temperature scanning tunneling microscopy/spectroscopy experiments performed on sup...
We have grown and investigated bulk single-crystal heavily boron-doped diamonds possessing supercond...
In this paper, we report on the transport properties of nanostructured boron doped diamond thin film...
The combination of different exotic properties in materials paves the way for the emergence of their...
Heavily Boron-doped MPCVD-grown (Microwave Plasma Chemical Vapour Deposition) polycrystalline diamo...
Heavily Boron-doped MPCVD-grown (Microwave Plasma Chemical Vapour Deposition) polycrystalline diamon...
The doping-induced metal-insulator transition (MIT) and superconductivity has been studied in highly...
The magnetic field dependence of the superconductivity in nanocrystalline boron doped diamond thin f...
The widely known allotropes of carbon are graphite, diamond and amorphous carbon. Out of these, in i...