EWS time delay in low energy e C60 elastic scattering

Fuente: arXiv
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Auteurs principaux: R., Aiswarya, Shaik, Rasheed, Jose, Jobin, Varma, Hari R., Chakraborty, Himadri S.
Format: Preprint
Publié: 2024
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author R., Aiswarya
Shaik, Rasheed
Jose, Jobin
Varma, Hari R.
Chakraborty, Himadri S.
author_facet R., Aiswarya
Shaik, Rasheed
Jose, Jobin
Varma, Hari R.
Chakraborty, Himadri S.
contents Time delay in a projectile-target scattering is a fundamental tool in understanding their interactions by probing the temporal domain. The present study focuses on computing and analyzing the Eisenbud-Wigner-Smith (EWS) time delay in low energy elastic e C60 scattering. The investigation is carried out in the framework of a non-relativistic partial wave analysis (PWA) technique. The projectile-target interaction is described in (1) Density Functional Theory (DFT) and (2) Annular Square Well (ASW) static model, and their final results are compared in details. The impact of polarization on resonant and non-resonant time delay is also investigated.
format Preprint
id arxiv_https___arxiv_org_abs_2401_03370
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle EWS time delay in low energy e C60 elastic scattering
R., Aiswarya
Shaik, Rasheed
Jose, Jobin
Varma, Hari R.
Chakraborty, Himadri S.
Numerical Analysis
Quantum Physics
Time delay in a projectile-target scattering is a fundamental tool in understanding their interactions by probing the temporal domain. The present study focuses on computing and analyzing the Eisenbud-Wigner-Smith (EWS) time delay in low energy elastic e C60 scattering. The investigation is carried out in the framework of a non-relativistic partial wave analysis (PWA) technique. The projectile-target interaction is described in (1) Density Functional Theory (DFT) and (2) Annular Square Well (ASW) static model, and their final results are compared in details. The impact of polarization on resonant and non-resonant time delay is also investigated.
title EWS time delay in low energy e C60 elastic scattering
topic Numerical Analysis
Quantum Physics
url https://arxiv.org/abs/2401.03370