In the Antiproton Decelerator (AD) Target Area antiprotons are produced by the collisions of 26 GeV/c proton beam with a fixed target. They are then collected by a 400 kA pulsed magnetic horn, momentum selected and injected into the AD facility. The area has been in operation since the 80s, keeping most of the equipment dating back to this period. A major upgrade is foreseen during the CERN's Long Shutdown 2 to guarantee the next decades of antiproton physics. Among other R&D; activities, three main systems are within the scope of this upgrade; (i) a new antiproton target design, pressurized-air-cooled and with a new core configuration based on the results from the HiRadMat27 experiment. (ii) Manufacturing of a set of new magnetic horns and...
The Antiproton Decelerator (AD) facility of CERN began operation in 1999 to serve experi-ments for s...
The AD-target (Antiproton Decelerator Target) is the main antiparticle production element of the CER...
In this report the author describes the current status of the antiproton deceleration (AD) facility ...
The CERN Antiproton Decelerator (AD) produces low-energy antiprotons for studies of antimatter. A 26...
This report outlines the future program of the BASE antiproton experiment at the Antiproton Decelera...
Antiprotons are produced at CERN by impacting intense proton beams of 26 GeV/c onto a high-Z water-c...
As the ELENA project is now well underway, focus is turned to the Antiproton Decelerator (AD) itself...
The Antiproton Decelerator Target (AD-Target) is a unique device responsible for the production of a...
This report summarizes the status of the antiproton (pbar) production area at the future FAIR (Faci...
In the context of AD area consolidation activities a redesign of the AD-target is planned. The infor...
This was the first magnetic horn developed by Simon Van der Meer to collect antiprotons in the AD c...
(on behalf of the AD team) To continue an important part of the LEAR physics programme, a simplified...
CERN has built a new experimental facility, called the Antiproton Decelerator (AD), by transforming ...
For antiproton production at CERN, high‐energy (26 GeV/c), intense, and short proton beams are impac...
CERN has built a new experimental facility, called the Antiproton Decelerator (AD), by transforming ...
The Antiproton Decelerator (AD) facility of CERN began operation in 1999 to serve experi-ments for s...
The AD-target (Antiproton Decelerator Target) is the main antiparticle production element of the CER...
In this report the author describes the current status of the antiproton deceleration (AD) facility ...
The CERN Antiproton Decelerator (AD) produces low-energy antiprotons for studies of antimatter. A 26...
This report outlines the future program of the BASE antiproton experiment at the Antiproton Decelera...
Antiprotons are produced at CERN by impacting intense proton beams of 26 GeV/c onto a high-Z water-c...
As the ELENA project is now well underway, focus is turned to the Antiproton Decelerator (AD) itself...
The Antiproton Decelerator Target (AD-Target) is a unique device responsible for the production of a...
This report summarizes the status of the antiproton (pbar) production area at the future FAIR (Faci...
In the context of AD area consolidation activities a redesign of the AD-target is planned. The infor...
This was the first magnetic horn developed by Simon Van der Meer to collect antiprotons in the AD c...
(on behalf of the AD team) To continue an important part of the LEAR physics programme, a simplified...
CERN has built a new experimental facility, called the Antiproton Decelerator (AD), by transforming ...
For antiproton production at CERN, high‐energy (26 GeV/c), intense, and short proton beams are impac...
CERN has built a new experimental facility, called the Antiproton Decelerator (AD), by transforming ...
The Antiproton Decelerator (AD) facility of CERN began operation in 1999 to serve experi-ments for s...
The AD-target (Antiproton Decelerator Target) is the main antiparticle production element of the CER...
In this report the author describes the current status of the antiproton deceleration (AD) facility ...