The authors have realized NbN (100) nanofilms on a 3C-SiC (100)/Si(100) substrate by dc reactive magnetron sputtering at 800?°C. High-resolution transmission electron microscopy (HRTEM) is used to characterize the films, showing a monocrystalline structure and confirming epitaxial growth on the 3C-SiC layer. A film ranging in thickness from 3.4?to?4.1?nm shows a superconducting transition temperature of 11.8?K, which is the highest reported for NbN films of comparable thickness. The NbN nano-films on 3C-SiC offer a promising alternative to improve terahertz detectors. For comparison, NbN nanofilms grown directly on Si substrates are also studied by HRTEM.Kavli Institute of NanoscienceApplied Science
The key of improving hot-electron bolometer (HEB) mixer performance lies inevitably in the quality o...
International audienceAbstract. We describe the collective fabrication and characterization of super...
Nitride superconductors and specially niobium nitride are key materials for developing high performa...
We report on electrical properties and microstructure of epitaxial thin NbN films grown on 3C-SiC/Si...
This paper reflects on the rigorous investigation of high-quality 5nm thin NbN films which were depo...
This paper presents the studies of high-quality 5 nmthin NbN films deposited by means of reactive DC...
The suitability of AlxGa1-xN epi-layer to deposit onto ultra-thin NbN films has been demonstrated fo...
International audienceIn this paper, we study the crystalline properties and semiconducting critical...
A very promising way to increase the detection efficiency of nanowire superconducting single-photon ...
NbN and Nb-Si-N films were deposited by magnetron sputtering the Nb and Si targets on silicon wafers...
We demonstrate high-quality monocrystalline NbN films deposited by DC magnetron sputtering on a GaN/...
NbN and Nb–Si–N films were deposited by magnetron sputtering the Nb and Si targets on silicon wafers...
This paper discusses the possibility of growing NbN ultra-thin films on Si-substrates and AlxGa1-xN ...
High sensitivity ultrafast nanowire superconducting single photon detectors (SSPD) in the near infra...
We demonstrate high-performance nanowire superconducting single photon detectors (SSPDs) on bN thin ...
The key of improving hot-electron bolometer (HEB) mixer performance lies inevitably in the quality o...
International audienceAbstract. We describe the collective fabrication and characterization of super...
Nitride superconductors and specially niobium nitride are key materials for developing high performa...
We report on electrical properties and microstructure of epitaxial thin NbN films grown on 3C-SiC/Si...
This paper reflects on the rigorous investigation of high-quality 5nm thin NbN films which were depo...
This paper presents the studies of high-quality 5 nmthin NbN films deposited by means of reactive DC...
The suitability of AlxGa1-xN epi-layer to deposit onto ultra-thin NbN films has been demonstrated fo...
International audienceIn this paper, we study the crystalline properties and semiconducting critical...
A very promising way to increase the detection efficiency of nanowire superconducting single-photon ...
NbN and Nb-Si-N films were deposited by magnetron sputtering the Nb and Si targets on silicon wafers...
We demonstrate high-quality monocrystalline NbN films deposited by DC magnetron sputtering on a GaN/...
NbN and Nb–Si–N films were deposited by magnetron sputtering the Nb and Si targets on silicon wafers...
This paper discusses the possibility of growing NbN ultra-thin films on Si-substrates and AlxGa1-xN ...
High sensitivity ultrafast nanowire superconducting single photon detectors (SSPD) in the near infra...
We demonstrate high-performance nanowire superconducting single photon detectors (SSPDs) on bN thin ...
The key of improving hot-electron bolometer (HEB) mixer performance lies inevitably in the quality o...
International audienceAbstract. We describe the collective fabrication and characterization of super...
Nitride superconductors and specially niobium nitride are key materials for developing high performa...