| dc.contributor.author |
Das, Arpan |
|
| dc.date.accessioned |
2025-11-27T04:21:08Z |
|
| dc.date.available |
2025-11-27T04:21:08Z |
|
| dc.date.issued |
2022-03 |
|
| dc.identifier.uri |
https://arxiv.org/abs/2203.15562 |
|
| dc.identifier.uri |
http://dspace.bits-pilani.ac.in:8080/jspui/handle/123456789/20241 |
|
| dc.description.abstract |
We consider the quantum kinetic-theory description for interacting massive spin-half fermions using the Wigner function formalism. We derive a general kinetic theory description assuming that the spin effects appear at the classical and quantum level. To track the effect of such different contributions we use the semi-classical expansion method to obtain the generalized dynamical equations including spin, analogous to classical Boltzmann equation. This approach can be used to obtain a collision kernel involving local as well as non-local collisions among the microscopic constituent of the system and eventually, a framework of spin hydrodynamics ensuring the conservation of the energy-momentum tensor and total angular momentum tensor. |
en_US |
| dc.language.iso |
en |
en_US |
| dc.subject |
Physics |
en_US |
| dc.subject |
Quantum kinetic theory |
en_US |
| dc.subject |
Wigner function formalism |
en_US |
| dc.subject |
Spin hydrodynamics |
en_US |
| dc.subject |
Semi-classical expansion |
en_US |
| dc.title |
Semi-classical kinetic theory for massive spin-half fermions with leading-order spin effects |
en_US |
| dc.type |
Preprint |
en_US |