Workshop on Physics and Engineering Opportunities at the Electron-Ion Collider 2016
from
Thursday 13 October 2016 (10:00)
to
Friday 14 October 2016 (17:10)
Monday 10 October 2016
Tuesday 11 October 2016
Wednesday 12 October 2016
Thursday 13 October 2016
10:00
Whiskey Distillery Tour (Auchentoshan)
Whiskey Distillery Tour (Auchentoshan)
10:00 - 11:00
12:50
Arrival at Ross Priory and buffet lunch
Arrival at Ross Priory and buffet lunch
12:50 - 13:50
13:50
Welcome and opening remarks
-
Daria Sokhan
(
University of Glasgow, UK
)
Welcome and opening remarks
Daria Sokhan
(
University of Glasgow, UK
)
13:50 - 14:00
14:00
Electron Ion Collider: The next QCD frontier for Understanding the Glue that Binds Us All
-
Abhay Deshpande
(
Stony Brook University
)
Electron Ion Collider: The next QCD frontier for Understanding the Glue that Binds Us All
Abhay Deshpande
(
Stony Brook University
)
14:00 - 15:00
Despite many decades of theoretical and experimental effort around the world, some of the most important questions in QCD remain unanswered: How does a proton get its spin? What roles do spin alignment and orbital angular momenta of the gluons play in this? Similarly, on the high energy frontier: What happens to gluon densities of nucleons and nuclei at very high energy? Does the glue in nucleon and all nuclei show identical behavior at high energy and form a unique form of gluonic matter, the so called, "Color Glass Condensate”? How would we investigate this experimentally? What can we learn about Confinement in QCD based on investigations of gluons in nucleons and nuclei? These are the sort of questions that form the backbone of the science case for the future Electron Ion Collider (EIC), that no other current or proposed facility can address with high precision. The EIC was recently recommended by the US Nuclear Science Advisory Committee (NSAC) as the highest priority future facility to built in the US after the completion of FRIB (The Facility for Rare Isotope Beams, currently under construction) in the US. In this talk, I will present a brief review of selected physics topics and their associated measurements, and the road map for the realization of this Collider.
15:00
eRHIC, Design of an Electron Ion Collider at Brookhaven Natl Laboratory
-
Ferdinand Willeke
eRHIC, Design of an Electron Ion Collider at Brookhaven Natl Laboratory
Ferdinand Willeke
15:00 - 16:00
Brookhaven National Laboratory is preparing a proposal for eRHIC, an electron ion collider with a peak luminosity of 10^33 cm^-2s^-1, upgradable to 10^34 cm-2s-1 and center of mass energies which range from 20 GeV to 140 GeV. ERHIC is designed to provide access to the entire Electron Ion collision physics program. A major component of eRHIC is the RHIC collider together with its injector complex for protons and heavy ions which require only minor modifications to provide the ion beams for eRHIC. The electron part of eRHIC is based on a multi-turn superconducting energy recovery linac which will provide spin polarized electrons of up to 18 GeV. In an effort to minimize technical risks, a solution based of an electron storage ring is being worked out as an alternative solution with similar collider performance. The presentation will discuss both solutions and will describe the ongoing R&D program which is carried out to finalize the conceptional eRHIC design.
16:00
Coffee and tea break
Coffee and tea break
16:00 - 16:20
16:20
JLEIC: Overview of the Jefferson Lab Accelerator Design and R&D
-
Fulvia Pilat
(
Department of Physics
)
JLEIC: Overview of the Jefferson Lab Accelerator Design and R&D
Fulvia Pilat
(
Department of Physics
)
16:20 - 17:20
17:20
Positron opportunities at JLab and a future EIC
-
Eric Voutier
(
LPSC/IN2P3/CNRS - UJF - INP
)
Positron opportunities at JLab and a future EIC
Eric Voutier
(
LPSC/IN2P3/CNRS - UJF - INP
)
17:20 - 18:00
18:00
Discussion
Discussion
18:00 - 18:30
19:30
Whisky tasting
Whisky tasting
19:30 - 20:30
20:30
Dinner
Dinner
20:30 - 22:30
Friday 14 October 2016
09:00
JLEIC: Physics and Guiding Concepts for its Design
-
Rikutaro Yoshida
(
Argonne National Laboratory (US)
)
JLEIC: Physics and Guiding Concepts for its Design
Rikutaro Yoshida
(
Argonne National Laboratory (US)
)
09:00 - 10:00
10:00
EIC@BNL - Energy Reach - Physics and Detectors
-
Elke-Caroline Aschenauer
(
BNL
)
EIC@BNL - Energy Reach - Physics and Detectors
Elke-Caroline Aschenauer
(
BNL
)
10:00 - 11:00
11:00
Coffee and tea break
Coffee and tea break
11:00 - 11:30
11:30
3D Nucleon Studies towards EIC (an Italian View)
-
Marco Contalbrigo
(
Dipartimento di Fisica
)
3D Nucleon Studies towards EIC (an Italian View)
Marco Contalbrigo
(
Dipartimento di Fisica
)
11:30 - 12:10
12:10
EIC Tracker R&D at CEA Saclay
-
Franck Sabatié
(
CEA Saclay
)
EIC Tracker R&D at CEA Saclay
Franck Sabatié
(
CEA Saclay
)
12:10 - 12:35
12:35
Lunch
Lunch
12:35 - 13:45
13:45
Next-generation nuclear DIS: spectator tagging with light ions at an EIC
-
Wim Cosyn
Next-generation nuclear DIS: spectator tagging with light ions at an EIC
Wim Cosyn
13:45 - 14:15
An Electron-Ion Collider (EIC) would enable next-generation measurements of DIS on light nuclei (deuteron, 3He, ...) with detection of nucleons and fragments in the forward region and measurement of their recoil momentum ("spectator tagging"). Such experiments allow one to control the nuclear configuration during the high-energy process and could be used for (a) precision measurements of neutron spin structure in electron-deuteron DIS with proton tagging, eliminating nuclear binding through on-shell extrapolation in the recoil momentum; (b) controlled measurements of the nuclear modifications of quark/gluon densities (EMC effect) in defined nuclear configurations; (c) novel studies of diffraction and nuclear shadowing at x << 0.1. We review the physics applications of spectator tagging at EIC, summarize the experimental and theoretical challenges, and report process simulations and physics impact studies from a dedicated R&D project.
14:15
UK R&D on silicon tracking and vertexing for the EIC
-
Laura Gonella
(
University of Birmingham (UK)
)
UK R&D on silicon tracking and vertexing for the EIC
Laura Gonella
(
University of Birmingham (UK)
)
14:15 - 14:40
14:40
Coffee and tea break
Coffee and tea break
14:40 - 15:00
15:00
Particle identification for a future EIC detector
-
Pawel Nadel-Turonski
Particle identification for a future EIC detector
Pawel Nadel-Turonski
15:00 - 15:40
Particle identification (PID) is an essential capability for a future EIC detector, required for flavor tagging in SIDIS, background suppression for open charm, and other key parts of the physics program. The necessity of incorporating a wide range of PID systems for both hadron and lepton identification, with significant variations in requirements at different rapidities, also gives detectors intended for the EIC a unique character. Not surprisingly, PID thus constitutes an important of the Generic Detector R&D for an Electron Ion Collider program. This talk will give an overview of the ongoing R&D efforts, focusing on Cherenkov systems for hadron ID, and suggest opportunities for involvement and future collaboration.
15:40
Discussion and closing remarks
-
Daria Sokhan
(
University of Glasgow, UK
)
Discussion and closing remarks
Daria Sokhan
(
University of Glasgow, UK
)
15:40 - 16:20
16:30
Departure from Ross Priory
Departure from Ross Priory
16:30 - 16:40