We report the results obtained from the characterization of bent Silicon, Germanium and Gallium Arsenide crystals, which are being used for focusing photons in the 90-300 keV energy range, in the framework of the LAUE project. Such crystals represent the best choice for building Laue lenses thanks to their high reflectivity and to the narrow Point Spread Function (PSF) they can provide. The test aims to select the best material, to optimize the thickness and to estimate the curvature radius of the crystal tiles that will be used for building a 20 m focal length Laue lens petal
This paper summarizes the development of a successful project, LAUE, supported by the Italian Space ...
X- and c-ray detection is currently a hot topic for a wide scientific community, spanning from astro...
The efficiency of a Laue lens for X and Gamma ray focusing in the energy range 60 ÷ 600 keV is close...
In the context of the LAUE project devoted to build a long focal-length focusing optics for soft γ–r...
We present the status of the LAUE project devoted to develop a technology for building a 20 meter lo...
In the context of the LAUE project devoted to build a long focal length focusing optics for soft gam...
Curved crystals as optical elements for focusing X- and γ rays in a Laue lens Abstract This thesi...
We describe the LAUE project devoted to develop a technology for building a 20 meter long focal leng...
In this paper we report progresses in the realization of self-standing bent crystals, which are suit...
International audienceA Laue lens gamma-ray telescope represents an exciting concept for a future hi...
A Laue lens is an optical component to focus hard x-ray photons through Bragg diffraction in Laue ge...
We present an experimental study on the method of surface grooving for bending crystals for the real...
An experimental study on the method of indentations for bent crystals to realize a hard X-ray Laue l...
With the aim of concentrating hard X- and γ-rays coming from celestial sources in the 100–1000 keV e...
With the aim of concentrating hard X- and γ-rays coming from celestial sources in the 100–1000 keV e...
This paper summarizes the development of a successful project, LAUE, supported by the Italian Space ...
X- and c-ray detection is currently a hot topic for a wide scientific community, spanning from astro...
The efficiency of a Laue lens for X and Gamma ray focusing in the energy range 60 ÷ 600 keV is close...
In the context of the LAUE project devoted to build a long focal-length focusing optics for soft γ–r...
We present the status of the LAUE project devoted to develop a technology for building a 20 meter lo...
In the context of the LAUE project devoted to build a long focal length focusing optics for soft gam...
Curved crystals as optical elements for focusing X- and γ rays in a Laue lens Abstract This thesi...
We describe the LAUE project devoted to develop a technology for building a 20 meter long focal leng...
In this paper we report progresses in the realization of self-standing bent crystals, which are suit...
International audienceA Laue lens gamma-ray telescope represents an exciting concept for a future hi...
A Laue lens is an optical component to focus hard x-ray photons through Bragg diffraction in Laue ge...
We present an experimental study on the method of surface grooving for bending crystals for the real...
An experimental study on the method of indentations for bent crystals to realize a hard X-ray Laue l...
With the aim of concentrating hard X- and γ-rays coming from celestial sources in the 100–1000 keV e...
With the aim of concentrating hard X- and γ-rays coming from celestial sources in the 100–1000 keV e...
This paper summarizes the development of a successful project, LAUE, supported by the Italian Space ...
X- and c-ray detection is currently a hot topic for a wide scientific community, spanning from astro...
The efficiency of a Laue lens for X and Gamma ray focusing in the energy range 60 ÷ 600 keV is close...