In this work we present a new concept for energy sensitive radiation-beam scintillator detectors based on a luminescent multilayer design, where each layer within the stack consists of a rare-earth-doped highly transparent oxide. For a given type of particle beam (i.e., protons, particles, etc.), its penetration depth, and therefore its...
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February 10, 2023 (v1)PublicationUploaded on: March 1, 2023
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February 21, 2023 (v1)Publication
Sculptured porous Bragg Microcavities (BMs) formed by the successive stacking of columnar SiO2 and TiO2 thin films with zig-zag columnar microstructure are prepared by glancing angle deposition. These BMs act as wavelength dependent optical retarders. This optical behavior is attributed to a self-structuration mechanism involving a...
Uploaded on: March 1, 2023 -
April 4, 2018 (v1)Publication
A compact and portable optofluidic microresonator has been fabricated and characterized. It is based on a Fabry-Perot microcavity consisting essentially of two tailored dichroic Bragg mirrors prepared by reactive magnetron sputtering deposition. The microresonator has been filled with an ethanol solution of Nile-Blue dye. Infrared laser...
Uploaded on: March 27, 2023 -
February 13, 2019 (v1)Publication
Colored semi-transparent Cu-Si oxide thin films have been prepared by reactive magnetron sputtering from a single cathode of copper-silicon composition. Thin films of different composition and optical response were obtained by changing process parameters like the relative amount of copper in the target and the O2/Ar mixture of the reactive...
Uploaded on: March 27, 2023 -
April 2, 2018 (v1)Publication
The influence of isotropically directed deposition flux on the formation of the thin film microstructure at low temperatures is studied. For this purpose we have deposited TiO2 thin films by two different deposition techniques: reactive magnetron sputtering, in two different experimental configurations, and plasma enhanced chemical vapor...
Uploaded on: December 4, 2022 -
December 5, 2023 (v1)Publication
Detector de partículas ionizantes. El objeto de la presente invención es un sensor de radiación ionizante con energías comprendidas entre 0.1 keV y 100 MeV sensible tanto al tipo de radiación como a su energía. El detector comprende una estructura apilada de varias capas de material con distintos luminiscentes
Uploaded on: December 7, 2023 -
August 10, 2022 (v1)Publication
Highly anisotropic resistivity surfaces are produced in indium tin oxide (ITO) films by nanoscale self-organization upon irradiation with a fs-laser beam operating at 1030 nm. Anisotropy is caused by the formation of laser-induced periodic surface structures (LIPSS) extended over cm-sized regions. Two types of optimized structures are observed....
Uploaded on: December 4, 2022 -
October 10, 2019 (v1)Publication
Growth of amorphous SiO2 thin films deposited by reactive magnetron sputtering at low temperatures has been studied under different oxygen partial pressure conditions. Film microstructures varied from coalescent vertical column-like to homogeneous compact microstructures, possessing all similar refractive indexes. A discussion on the process...
Uploaded on: March 27, 2023 -
November 13, 2015 (v1)Publication
We have studied low refractive index fluorine doped silica thin films prepared by reactive magnetron sputtering. Two experimental parameters were varied to increase the porosity of the films, the geometry of the deposition process (i.e., the use of glancing angle deposition) and the presence of chemical etching agents (fluorine species) at the...
Uploaded on: March 27, 2023 -
April 24, 2018 (v1)Publication
Quantification of light elements content in thin films is an important and difficult issue in many technological fields such as polymeric functional thin films, organic thin film devices, biomaterials, and doped semiconducting structures. Light elements are difficult to detect with techniques based on X-ray emission, such as energy dispersive...
Uploaded on: December 5, 2022