100 research outputs found
Study of Deformation Effects in the Charged Particle Emission from 46Ti
The 46Ti compound nucleus, as populated by the fusion-evaporation reaction
27Al + 19F at the bombarding energy of 144 MeV, has been investigated by
charged particle spectroscopy using the multidetector array ICARE at the
VIVITRON tandem facility of the IReS (Strasbourg). The light charged particles
have been measured in coincidence with evaporation residues. The CACARIZO code,
a Monte Carlo implementation of the statistical-model code CASCADE, has been
used to calculate the spectral shapes of evaporated alpha-particles which are
compared with the experimental spectra. This comparison indicates the possible
signature of large deformations of the compound nucleus.Comment: 6 pages, 4 figures, Proceedings od the Zakopane 20004 Symposium, to
be published in Acta Phys. Pol. B36 (2005
GDR Feeding of the Highly-Deformed Band in 42Ca
The gamma-ray spectra from the decay of the GDR in the compound nucleus
reaction 18O+28Si at bombarding energy of 105 MeV have been measured in an
experiment using the EUROBALL IV and HECTOR arrays. The obtained experimental
GDR strength function is highly fragmented, with a low energy (10 MeV)
component, indicating a presence of a large deformation and Coriolis effects.
In addition, the preferential feeding of the highly-deformed band in 42Ca by
this GDR low energy component is observed.Comment: 6 pages, 2 figures, Proceedings of the Zakopane2004 Symposium, to be
published in Acta Phys. Pol. B36 (2005
Strong Deformation Effects in Hot Rotating 46Ti
Exotic-deformation effects in 46Ti nucleus were investigated by analysing the
high-energy gamma-ray and the alpha-particle energy spectra. One of the
experiments was performed using the charged-particle multi-detector array ICARE
together with a large volume (4"x4") BGO detector. The study focused on
simultaneous measurement of light charged particles and gamma-rays in
coincidence with the evaporation residues. The experimental data show a
signature of very large deformations of the compound nucleus in the Jacobi
transition region at the highest spins. These results are compared to data from
previous experiments performed with the HECTOR array coupled to the EUROBALL
array, where it was found that the GDR strength function is highly fragmented,
strongly indicating a presence of nuclei with very large deformation.Comment: 10 pages, 6 figures, Proceedings of the Zakopane Conference on
Nuclear Physics, to be published in Acta Phys. Pol. B (2007
Characterization of a novel proton-CT scanner based on Silicon and LaBr(Ce) detectors
Treatment planning systems at proton-therapy centres generally use X-ray
computed tomography (CT) as primary imaging technique to infer the proton
treatment doses to tumour and healthy tissues. However, proton stopping powers
in the body, as derived from X-ray images, suffer from important proton-range
uncertainties. In order to reduce this uncertainty in range, one could use
proton-CT images instead. The main goal of this work is to test the
capabilities of a newly-developed proton-CT scanner, based on the use of a set
of tracking detectors and a high energy resolution scintillator for the
residual energy of the protons. Different custom-made phantoms were positioned
at the field of view of the scanner and were irradiated with protons at the CCB
proton-therapy center in Krakow. We measured with the phantoms at different
angles and produced sinograms that were used to obtain reconstructed images by
Filtered Back-Projection (FBP). The obtained images were used to determine the
capabilities of our scanner in terms of spatial resolution and proton Relative
Stopping Power mapping and validate its use as proton-CT scanner. The results
show that the scanner can produce medium-high quality images, with spatial
resolution better than 2 mm in radiography, below 3 mm in tomography and
resolving power in the RSP comparable to other state of the art pCT cameras
Electrical Quality Assurance of the Superconducting Circuits during LHC Machine Assembly
Based on the LHC powering reference database, all-together 1750 superconducting circuits were connected in the various cryogenic transfer lines of the LHC machine. Testing the continuity, magnet polarity, and the quality of the electrical insulation were the main tasks of the Electrical Quality Assurance (ELQA) activities during the LHC machine assembly. With the assembly of the LHC now complete, the paper reviews the work flow, resources, and the qualification results including the different types of electrical non-conformities
Proton radiographs using position-sensitive silicon detectors and high-resolution scintillators
Proton therapy is a cancer treatment technique currently in growth worldwide.
It offers advantages with respect to conventional X-ray and -ray
radiotherapy, in particular, a better control of the dose deposition allowing
to reach a higher conformity in the treatments. Therefore, it causes less
damage to the surrounding healthy tissue and less secondary effects. However,
in order to take full advantage of its potential, improvements in treatment
planning and dose verification are required. A new prototype of proton Computed
Tomography scanner is proposed to design more accurate and precise treatment
plans for proton therapy. Here, results obtained from an experiment performed
using a 100-MeV proton beam at the CCB facility in Krakow (Poland) are
presented. Proton radiographs of PMMA samples of 50-mm thickness with spatial
patterns in aluminum were taken. Their properties were studied, including
reproduction of the dimensions, spatial resolution and sensitivity to different
materials. They demonstrate the capabilities of the system to produce images
with protons. Structures of up to 2 mm are nicely resolved and the sensitivity
of the system was enough to distinguish thicknesses of 10 mm of aluminum or
PMMA. This constitutes a first step to validate the device as a proton
radiography scanner previous to the future tests as a proton CT scanner.Comment: 7 pages, 11 figures, submitted to IEEE TNS ANIMMA 2021 Conference
Proceeding
Quantum tunneling of the excited rotational bands in the superdeformed nucleus 143Eu
The properties of the thermally excited rotational motion up to the region of rotational damping are studied experimentally in the superdeformed nucleus 143 Eu. The effective lifetime of the excited discrete rotational bands forming ridge structures in ‐ matrices is measured at the EUROBALL array using the DSAM technique, giving a quadrupole momentQt 10 e b, consistent with the deformation of the superdeformed yrast band. In addition, the effective number of excited superdeformed bands is extracted by a statistical analysis of the ridge structure, for transition energies down to the region where the effect of the decay-out into the normal deformed well shows up. The experimental data are compared with microscopic cranked shell model calculations including a residual interaction of surface delta type. Satisfactory agreement between data and theory is obtained when the quantum tunneling of the excited superdeformed states is included in the model. © 2001 Published by Elsevier Science B.V
Proton Radiographs Using Position-Sensitive Silicon Detectors and High-Resolution Scintillators
7 pags., 11 figs., 1 tab.Proton therapy is a cancer treatment technique currently in growth since it offers advantages with respect to conventional X-ray and ¿ -ray radiotherapy. In particular, better control of the dose deposition allowing to reach higher conformity in the treatments causing less secondary effects. However, in order to take full advantage of its potential, improvements in treatment planning and dose verification are required. A new prototype of proton computed tomography scanner is proposed to design more accurate and precise treatment plans for proton therapy. Our prototype is formed by double-sided silicon strip detectors and scintillators of LaBr3(Ce) with high energy resolution and fast response. Here, the results obtained from an experiment performed using a 100-MeV proton beam are presented. Proton radiographs of polymethyl methacrylate (PMMA) samples of 50-mm thickness with spatial patterns in aluminum were taken. Their properties were studied, including reproduction of the dimensions, spatial resolution, and sensitivity to different materials. Structures of up to 2 mm are well resolved and the sensitivity of the system was enough to distinguish the thicknesses of 10 mm of aluminum or PMMA. The spatial resolution of the images was 0.3 line pairs per mm (MTF-10%). This constitutes the first step to validate the device as a proton radiography scanner.This work has been supported by the PRONTO-CM
B2017/BMD-3888 project funded by Comunidad de Madrid
(Spain). The research leading to these results has received
funding from the European Union’s Horizon 2020 research
and innovation programme under grant agreement no. 654002
(ENSAR2) and grant agreement No [730983] (INSPIRE).
This work has been partly supported by the Spanish Funding
Agency for Research (AEI) through the PID2019-104390GBI00 and PID2019-104714GB-C21 projects. A.N. Nerio acknowledges the fundings from the Erasmus Mundus Joint
Master Degree on Nuclear Physics co-funded by the Erasmus+Programme of the European Union
Study of the γ decay of high-lying states in 208Pb via inelastic scattering of 17O ions
High-lying states in 208Pb nucleus were populated via inelastic scattering of a 17O beam at bombarding energy of 20 MeV/u. Their subsequent gamma decay was measured with the detector system AGATA Demonstrator based on HPGe detectors, coupled to an array of large volume LaBr3:Ce scintillators. Preliminary results in comparison with (γ,γ′) data, for states in the 5–8 MeV energy interval, seem to indicate that in that region the states belong to two different groups one with a isoscalar character and the other with a isovector nature. This is similar to what was observed in other stable nuclei with (α,α′γ) experiments. The multipolarity of the observed gamma transitions is determined with remarkable sensitivity thanks to angular distribution measurements. Data aiming at studying the neutron decay of the Giant Quadrupole Resonance in the 208Pb by the high resolution measurement of the following gamma decay are also presented in their preliminary form
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