Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Weak interaction axial form factors of the octet baryons in nuclear medium

View through CrossRef
We study the axial-vector and the induced pseudoscalar form factors associated with the weak transitions between the octet baryon members in nuclear medium, using a covariant constituent quark model. We extend previous calculations of the axial transition form factors from the vacuum (free space) to the nuclear medium (symmetric nuclear matter). The extension of the model to the nuclear medium takes into account the modifications of the properties of hadrons in the medium (masses and coupling constants), as determined by the quark-meson coupling model. The axial-vector (GA) and the induced pseudoscalar (GP) form factors are evaluated for different values of the nuclear density ρ in terms of the square transfer momentum q2=−Q2. We conclude that, in general, the GA and GP form factors are reduced in the nuclear medium. The reduction is stronger for light baryons and high densities. The medium modifications are milder for the heavier octet baryons, particularly at large Q2. The calculations presented here can be used to estimate the cross sections of neutrino and antineutrino scattering with nucleus, and neutrino and antineutrino scattering with hyperons bound to a nucleus, as well as those in the cores of compact stars.
Title: Weak interaction axial form factors of the octet baryons in nuclear medium
Description:
We study the axial-vector and the induced pseudoscalar form factors associated with the weak transitions between the octet baryon members in nuclear medium, using a covariant constituent quark model.
We extend previous calculations of the axial transition form factors from the vacuum (free space) to the nuclear medium (symmetric nuclear matter).
The extension of the model to the nuclear medium takes into account the modifications of the properties of hadrons in the medium (masses and coupling constants), as determined by the quark-meson coupling model.
The axial-vector (GA) and the induced pseudoscalar (GP) form factors are evaluated for different values of the nuclear density ρ in terms of the square transfer momentum q2=−Q2.
We conclude that, in general, the GA and GP form factors are reduced in the nuclear medium.
The reduction is stronger for light baryons and high densities.
The medium modifications are milder for the heavier octet baryons, particularly at large Q2.
The calculations presented here can be used to estimate the cross sections of neutrino and antineutrino scattering with nucleus, and neutrino and antineutrino scattering with hyperons bound to a nucleus, as well as those in the cores of compact stars.

Related Results

Measurement of the Σ+ production and the p-Σ+ correlation function in proton-proton collisions with ALICE at the LHC
Measurement of the Σ+ production and the p-Σ+ correlation function in proton-proton collisions with ALICE at the LHC
In the past decades, progress in the development of particle accelerators and detectors enabled scientists to study the production, interactions, and collective phenomena of many p...
Electroweak Form Factors of Baryons in Dense Nuclear Matter
Electroweak Form Factors of Baryons in Dense Nuclear Matter
There is evidence that the properties of hadrons are modified in a nuclear medium. Information about the medium modifications of the internal structure of hadrons is fundamental fo...
Study on Anatomycal Structure of Watergum Wood (<i>Syzygium </i>sp.)
Study on Anatomycal Structure of Watergum Wood (<i>Syzygium </i>sp.)
<!--[if gte mso 9]><xml> <w:WordDocument> <w:View>Normal</w:View> <w:Zoom>0</w:Zoom> <w:TrackMoves /> <w:TrackFormatting /> &l...
KONTESTASI TASAWUF SUNNÎ DAN TASAWUF FALSAFÎ DI NUSANTARA
KONTESTASI TASAWUF SUNNÎ DAN TASAWUF FALSAFÎ DI NUSANTARA
<p>This article scrutinizes the history of Islamic development in Nusantara between 15th to 18th centuries, which has been colored from theological mysticism thought. Uniquel...

Back to Top