Fission Fragment Angular Distribution Measurements of 235U and 238U at CERN N_TOF Facility

Fission Fragment Angular Distribution Measurements of 235U and 238U at CERN N_TOF Facility PDF Author: Esther Leal Cidoncha
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Languages : en
Pages : 0

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Book Description
Neutron-induced fission cross sections of 238U and 235U are used as standards in the fast neutron region up to 200 MeV. A high accuracy of the standards is relevant to experimentally determine other neutron reaction cross sections. Therefore, the detection effciency should be corrected by using the angular distribution of the fission fragments (FFAD), which are barely known above 20 MeV. In addition, the angular distribution of the fragments produced in the fission of highly excited and deformed nuclei is an important observable to investigate the nuclear fission process. In order to measure the FFAD of neutron-induced reactions, a fission detection setup based on parallel-plate avalanche counters (PPACs) has been developed and successfully used at the CERN-n_TOF facility. In this work, we present the preliminary results on the analysis of new 235U(n,f) and 238U(n,f) data in the extended energy range up to 200 MeV compared to the existing experimental data.

Fission Fragment Angular Distribution Measurements of 235U and 238U at CERN N_TOF Facility

Fission Fragment Angular Distribution Measurements of 235U and 238U at CERN N_TOF Facility PDF Author: Esther Leal Cidoncha
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
Neutron-induced fission cross sections of 238U and 235U are used as standards in the fast neutron region up to 200 MeV. A high accuracy of the standards is relevant to experimentally determine other neutron reaction cross sections. Therefore, the detection effciency should be corrected by using the angular distribution of the fission fragments (FFAD), which are barely known above 20 MeV. In addition, the angular distribution of the fragments produced in the fission of highly excited and deformed nuclei is an important observable to investigate the nuclear fission process. In order to measure the FFAD of neutron-induced reactions, a fission detection setup based on parallel-plate avalanche counters (PPACs) has been developed and successfully used at the CERN-n_TOF facility. In this work, we present the preliminary results on the analysis of new 235U(n,f) and 238U(n,f) data in the extended energy range up to 200 MeV compared to the existing experimental data.

Fission Fragment Angular Distribution and Fission Cross Section Validation

Fission Fragment Angular Distribution and Fission Cross Section Validation PDF Author: Lou Sai Leong
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Languages : en
Pages : 0

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Book Description
The present knowledge of angular distributions of neutron-induced fission is limited to a maximal energy of 15 MeV, with large discrepancies around 14 MeV. Only 238U and 232Th have been investigated up to 100 MeV in a single experiment. The n_TOF Collaboration performed the fission cross section measurement of several actinides (232Th, 235U, 238U, 234U, 237Np) at the n_TOF facility using an experimental set-up made of Parallel Plate Avalanche Counters (PPAC), extending the energy domain of the incident neutron above hundreds of MeV. The method based on the detection of the 2 fragments in coincidence allowed to clearly disentangle the fission reactions among other types of reactions occurring in the spallation domain. I will show the methods we used to reconstruct the full angular resolution by the tracking of fission fragments. Below 10 MeV our results are consistent with existing data. For example in the case of 232Th, below 10 MeV the results show clearly the variation occurring at the first (1 MeV) and second (7 MeV) chance fission, corresponding to transition states of given J and K (total spin and its projection on the fission axis), and a much more accurate energy dependence at the 3rd chance threshold (14 MeV) has been obtained. In the spallation domain, above 30 MeV we confirm the high anisotropy revealed in 232Th by the single existing data set. I'll discuss the implications of this finding, related to the low anisotropy exhibited in proton-induced fission. I also explore the critical experiments which is valuable checks of nuclear data. The 237Np neutron-induced fission cross section has recently been measured in a large energy range (from eV to GeV) at the n TOF facility at CERN. When compared to previous measurements, the n TOF fission cross section appears to be higher by 5-7 % beyond the fission threshold. To check the relevance of n TOF data, we simulate a criticality experiment performed at Los Alamos with a 6 kg sphere of 237Np. This sphere was surrounded by enriched uranium 235U so as to approach criticality with fast neutrons. The simulation predicts a multiplication factor keff in better agreement with the experiment (the deviation of 750 pcm is reduced to 250 pcm) when we replace the ENDF/B- VII.0 evaluation of the 237Np fission cross section by the n TOF data. We also explore the hypothesis of deficiencies of the inelastic cross section in 235U which has been invoked by some authors to explain the deviation of 750 pcm. The large distortion that should be applied to the inelastic cross sections in order to reconcile the critical experiment with its simulation is incompatible with existing measurements. Also we show that the nubar of 237Np can hardly be incriminated because of the high accuracy of the existing data. Fission rate ratios or averaged fission cross sections measured in several fast neutron fields seem to give contradictory results on the validation of the 237Np cross section but at least one of the benchmark experiments, where the active deposits have been well calibrated for the number of atoms, favors the n TOF data set. These outcomes support the hypothesis of a higher fission cross section of 237Np.

Fission-fragment Angular Distributions and Total Kinetic Energies for 235U(n, F) From. 18 to 8. 83 MeV.

Fission-fragment Angular Distributions and Total Kinetic Energies for 235U(n, F) From. 18 to 8. 83 MeV. PDF Author:
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Languages : en
Pages :

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Book Description
A gridded ion chamber was used to measure the fission fragment angular distribution and total kinetic energy for the 235U(n, f) reaction from 0.18 to 8.81 MeV neutron energy. The anisotropies are in generally good agreement with earlier measurements. The average total kinetic energy is approx. 0.2 MeV greater than the thermal value at neutron energies

Fission Fragment Angular Distributions Measured with a Time Projection Chamber

Fission Fragment Angular Distributions Measured with a Time Projection Chamber PDF Author:
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Category :
Languages : en
Pages :

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Book Description
The subject is presented in a series of slides with the following organization: Introduction (What is anisotropy? Relevance (Theory and ratio cross section), Previous measurements); Experiment (Particle tracking in the fissionTPC, Neutron time of flight, Data analysis & uncertainty calculation, Preliminary result for 235U); and Future Work (Refine 235U result, Process 239Pu data).

Fission Fragment Mass Distributions and Total Kinetic Energy Release of 235-Uranium and 238-Uranium in Neutron-Induced Fission at Intermediate and Fast Neutron Energies

Fission Fragment Mass Distributions and Total Kinetic Energy Release of 235-Uranium and 238-Uranium in Neutron-Induced Fission at Intermediate and Fast Neutron Energies PDF Author:
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ISBN:
Category :
Languages : en
Pages : 133

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This Ph. D. dissertation describes a measurement of the change in mass distributions and average total kinetic energy (TKE) release with increasing incident neutron energy for fission of 235U and 238U. Although fission was discovered over seventy-five years ago, open questions remain about the physics of the fission process. The energy of the incident neutron, En, changes the division of energy release in the resulting fission fragments, however, the details of energy partitioning remain ambiguous because the nucleus is a many-body quantum system. Creating a full theoretical model is difficult and experimental data to validate existing models are lacking. Additional fission measurements will lead to higher-quality models of the fission process, therefore improving applications such as the development of next-generation nuclear reactors and defense. This work also paves the way for precision experiments such as the Time Projection Chamber (TPC) for fission cross section measurements and the Spectrometer for Ion Determination in Fission (SPIDER) for precision mass yields.

Nuclear Science Abstracts

Nuclear Science Abstracts PDF Author:
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Category : Nuclear energy
Languages : en
Pages : 1004

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Description and analysis of a technique for the measurement of fission fragment angular distributions

Description and analysis of a technique for the measurement of fission fragment angular distributions PDF Author: G. D. James
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Category : Nuclear physics
Languages : en
Pages :

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A Simultaneous Measurement of the Angular Distribution, Mass and Kinetic Energy of 235U and 232Th Fission Fragments

A Simultaneous Measurement of the Angular Distribution, Mass and Kinetic Energy of 235U and 232Th Fission Fragments PDF Author: Refaat El-Hajje
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Category : Nuclear fission
Languages : en
Pages : 422

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Fragment Angular Distributions for Dipole Photofission of 233U, 235U and 237Np

Fragment Angular Distributions for Dipole Photofission of 233U, 235U and 237Np PDF Author: Gary Trott Rizzo
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ISBN:
Category :
Languages : en
Pages : 254

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Measurement of Energy Dependence of Fission Fragment Angular Anisotropy for Resonance Neutron Induced Fission of 235 U Aligned Target

Measurement of Energy Dependence of Fission Fragment Angular Anisotropy for Resonance Neutron Induced Fission of 235 U Aligned Target PDF Author: A. A. Bogdzel
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ISBN:
Category :
Languages : en
Pages : 6

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