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The Measurements of Parity Violation in Resonant Neutron-capture Reactions

The Measurements of Parity Violation in Resonant Neutron-capture Reactions
Author:
Publisher:
Total Pages: 9
Release: 1990
Genre:
ISBN:

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The study of parity violation in total (n, [gamma]) cross sections on 139La and 117Sn targets was performed at the LANSCE pulsed neutron source using longitudinally polarized neutrons and a BaF2 detector. The effect of parity nonconservation in the 139La(n, [gamma]) reaction for the resonance at E{sub n}=0.73 eV was confirmed. New results for p-wave resonances in the 117Sn(n, [gamma]) reaction were obtained. A comparison between the capture and transmission techniques is presented. 12 refs., 5 figs., 1 tab.


Time Reversal Invariance And Parity Violation In Neutron Reactions - Proceedings Of The 2nd International Workshop

Time Reversal Invariance And Parity Violation In Neutron Reactions - Proceedings Of The 2nd International Workshop
Author: Christopher R Gould
Publisher: World Scientific
Total Pages: 262
Release: 1994-01-28
Genre:
ISBN: 9814552291

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The International Workshop on Time Reversal Invariance and Parity Violation in Neutron Reactions focused on the study of parity violation (PV) and time reversal invariance (TRI) in neutron physics. Emphasis was placed on measurements with polarized neutron beams and polarized targets as well as on the implication of recent theoretical developments for the future progress of this rapidly developing and increasingly important field of research.


Measuring Parity Violation Using the Neutron Capture Reaction

Measuring Parity Violation Using the Neutron Capture Reaction
Author:
Publisher:
Total Pages: 7
Release: 1993
Genre:
ISBN:

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Measuring parity violation using the total capture reaction has certain advantages over neutron transmission experiments. Very much less material is required for targets, a necessity when dealing with separated isotopes. The capture reaction is also quite sensitive to very weak resonances. These advantages indicated the need to construct a near 4[pi] gamma ray detector for use at LANSCE. A design for such a detector has been completed. Issues influencing the design and the final design parameters will be discussed in detail.


Nuclear Parity Violation in Neutron Capture. [Asymmetry, Polarization].

Nuclear Parity Violation in Neutron Capture. [Asymmetry, Polarization].
Author:
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Total Pages:
Release: 1977
Genre:
ISBN:

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Measurements of asymmetries in neutron capture .gamma. rays on nuclei are discussed. Also, an experiment giving an upper limit in np capture is described.


Parity Violation and Cold Neutron Capture

Parity Violation and Cold Neutron Capture
Author: Mark McCrea
Publisher:
Total Pages: 0
Release: 2016
Genre:
ISBN:

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Despite decades of theoretical and experimental investigation, the fundamental interactions between nucleons remains poorly understood. While the strong interaction is responsible for binding quarks into nucleons, and nucleons into nuclei, there is no consistent description of these processes. At the low energies where nucleon binding occurs, the interactions are in principle calculable from quantum chromodynamics, but the required non-perturbative calculations are not possible. Instead, different models have been created to describe different phenomena. These models require experimental input to constrain them. As the expected weak interaction effects are not seen in the strangeness-conserving systems as have been seen in other systems, it is believed that the strong interaction interferes with the weak interaction. Therefore by measuring parity-violating observables that occur due to the weak interaction, information can be gained about the strong interaction. The NPDGamma and n3He experiments are two complementary experiments that measured a parity violating observables in a few nucleon system. They ran on the Fundamental Neutron Physics Beamline at the Spallation Neutron Source. The NPDGamma experiment measured the parity violating directional asymmetry in the gamma ray's emission direction after polarized cold neutron capture on a liquid parahydrogen target using an array of 48 CsI detectors. The n3He experiment measured the parity violating directional asymmetry in the proton emission direction after polarized cold neutron capture on a gaseous $^{3}$He target. The capture occurs inside an ionization chamber that measures the proton emission direction. Both experiments have completed data taking with data analysis in an advanced state. These experiments should be able to be used with a number of already existing experimental results to constrain the models. I designed and assembled a pair of $^{3}$He ionization chambers that were used as beam monitors during the experiments. Using the lessons learned from the beam monitors, I then designed and assembled the ionization chamber that is the combined target and detector for the n3He experiment. The monitors and target chamber were examined to determine their charge collection properties and linearity after installation. One of the monitors was calibrated to determine the neutron flux from the output current.