$ϕ$-meson spectroscopy and diffractive production using two Schrödinger like equations on the light-front

Fuente: arXiv
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Main Authors: Gurjar, Bheemsehan, Mondal, Chandan, Kaur, Satvir
Format: Preprint
Published: 2025
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author Gurjar, Bheemsehan
Mondal, Chandan
Kaur, Satvir
author_facet Gurjar, Bheemsehan
Mondal, Chandan
Kaur, Satvir
contents We show that the holographic Schrödinger equation of light-front chiral QCD, together with the 't Hooft equation of (1+1)-dimensional QCD in the large $N_c$ limit, can simultaneously describe the $ϕ$-meson mass spectroscopy as well as diffractive cross-section. We compute the $ϕ$-meson diffractive cross-section by utilizing its resulting light-front wave functions (LFWFs), in conjunction with the color glass condensate (CGC) dipole scattering amplitude. Our predictions for the diffractive cross sections show good agreement with the existing experimental data from HERA at various energies from H1 and ZEUS collaborations. Additionally, we show that the obtained $ϕ$-meson LFWFs effectively describe its various properties, including the decay constant, distribution amplitudes, electromagnetic form factors, charge radius, and magnetic and quadrupole moments.
format Preprint
id arxiv_https___arxiv_org_abs_2501_11436
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle $ϕ$-meson spectroscopy and diffractive production using two Schrödinger like equations on the light-front
Gurjar, Bheemsehan
Mondal, Chandan
Kaur, Satvir
High Energy Physics - Phenomenology
We show that the holographic Schrödinger equation of light-front chiral QCD, together with the 't Hooft equation of (1+1)-dimensional QCD in the large $N_c$ limit, can simultaneously describe the $ϕ$-meson mass spectroscopy as well as diffractive cross-section. We compute the $ϕ$-meson diffractive cross-section by utilizing its resulting light-front wave functions (LFWFs), in conjunction with the color glass condensate (CGC) dipole scattering amplitude. Our predictions for the diffractive cross sections show good agreement with the existing experimental data from HERA at various energies from H1 and ZEUS collaborations. Additionally, we show that the obtained $ϕ$-meson LFWFs effectively describe its various properties, including the decay constant, distribution amplitudes, electromagnetic form factors, charge radius, and magnetic and quadrupole moments.
title $ϕ$-meson spectroscopy and diffractive production using two Schrödinger like equations on the light-front
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2501.11436