October 12, 2026 to November 13, 2026
YITP, Kyoto University
Asia/Tokyo timezone

Mining for gluon saturation at colliders

Not scheduled
45m
Panasonic Auditorium, Yukawa Hall (YITP, Kyoto University)

Panasonic Auditorium, Yukawa Hall

YITP, Kyoto University

Kitashirakawa Oiwakecho, Sakyo Ward, Kyoto, 606-8267
(3rd week, Oct. 26-30) Symposium YKIS Symposium

Speaker

Farid Salazar (Temple University)

Description

A central goal of the future Electron-Ion Collider and of upcoming upgrades at the Large Hadron Collider is the search for a new regime of nuclear matter known as the Color Glass Condensate (CGC). In this extreme state, matter is dominated by an exceptionally dense population of gluons, the particles responsible for binding quarks inside protons and nuclei. Over the past two decades, predictions from the CGC effective theory have been confronted with data from HERA, RHIC, and the LHC, yielding intriguing hints of gluon saturation, although definitive evidence remains elusive.

In this presentation, I will review recent developments in the CGC framework and discuss how this physics can be explored through measurements at current and future colliders. I will highlight several novel observables that offer promising new avenues for uncovering this dense gluonic regime. I will conclude with a brief discussion of the CGC’s broader connections to other areas of physics.

Author

Farid Salazar (Temple University)

Presentation materials

There are no materials yet.