Boron carbide (B4C) has outstanding properties making it particularly interesting in the field of neutron detection. In this study we exploit nanosecond pulsed laser deposition (PLD) for the synthesis of B-enriched films with micrometer-scale thickness for future realization of a neutron converter layer. B-enriched B4C layers were deposited by PLD at room temperature under different wavelength conditions (λP = 266, 248,193 nm), fluence (from 2 to 10 J/cm 2 ) and substrate (silica, Si (100), kapton (polyamide), PMMA and AZ 1512 resist). The measured elemental composition of boron (B), carbon (C) and oxygen (O) as well as the structural properties of the deposited films highlighted: i) wavelength- and fluence-dependent B sub-stoichiometry wit...
Due to the present shortage of He-3 and the associated tremendous increase of its price, the supply ...
The 3He supply problem in the U.S. has necessitated the search for alternatives for neutron detectio...
The sustainability goals of the modern world and the fascinating properties of sub-micron scale mate...
In view of the demand for high-quality thermal neutron detectors, boron films have recently attracte...
Solid-state neutron detectors exploit nuclear interactions producing energetic charged particles wit...
Solid state neutron detection devices based on semiconducting boron carbide have the potential for n...
International audienceThe influence of the incorporation of boron in Diamond-Like Carbon (DLC) films...
The influence of substrate temperature on the composition and crystallinity of boron carbonitride (B...
Micron-thick boron films have been deposited by Pulsed Laser Deposition in vacuum on several substra...
We report the synthesis of thin films of B–C–N and C–N deposited by N+ ion-beam-assisted pulsed lase...
Amorphous boron carbide (B4C) thin films are by far the most popular form for the neutron converting...
The development of boron rich solid state neutron detectors has become a reality as a result of the ...
Boron carbide films are increasingly being investigated for their application in new generation neut...
Due to the very limited availability of He-3, new kinds of neutron detectors, not based on 3He, are ...
Solid state neutron detection devices based on semiconducting boron carbide have the potential for n...
Due to the present shortage of He-3 and the associated tremendous increase of its price, the supply ...
The 3He supply problem in the U.S. has necessitated the search for alternatives for neutron detectio...
The sustainability goals of the modern world and the fascinating properties of sub-micron scale mate...
In view of the demand for high-quality thermal neutron detectors, boron films have recently attracte...
Solid-state neutron detectors exploit nuclear interactions producing energetic charged particles wit...
Solid state neutron detection devices based on semiconducting boron carbide have the potential for n...
International audienceThe influence of the incorporation of boron in Diamond-Like Carbon (DLC) films...
The influence of substrate temperature on the composition and crystallinity of boron carbonitride (B...
Micron-thick boron films have been deposited by Pulsed Laser Deposition in vacuum on several substra...
We report the synthesis of thin films of B–C–N and C–N deposited by N+ ion-beam-assisted pulsed lase...
Amorphous boron carbide (B4C) thin films are by far the most popular form for the neutron converting...
The development of boron rich solid state neutron detectors has become a reality as a result of the ...
Boron carbide films are increasingly being investigated for their application in new generation neut...
Due to the very limited availability of He-3, new kinds of neutron detectors, not based on 3He, are ...
Solid state neutron detection devices based on semiconducting boron carbide have the potential for n...
Due to the present shortage of He-3 and the associated tremendous increase of its price, the supply ...
The 3He supply problem in the U.S. has necessitated the search for alternatives for neutron detectio...
The sustainability goals of the modern world and the fascinating properties of sub-micron scale mate...