Jul 26–31, 2026
Simon Fraser University Harbour Centre
US/Pacific timezone
Registration is now closed. A TENTATIVE schedule is available for your perusal.

The N=126 Factory at Argonne National Laboratory's ATLAS Facility

Jul 28, 2026, 6:09 p.m.
1m
Fletcher Challenge Canada (Simon Fraser University Harbour Centre)

Fletcher Challenge Canada

Simon Fraser University Harbour Centre

515 West Hastings St, Vancouver, B.C. V6B 5K3
Posters Poster Session

Speaker

Matthew Martin (Argonne National Laboratory)

Description

Precision nuclear data, including nuclear masses, neutron capture cross sections, and $\beta$-decay half lives, are needed throughout the $r$-process path in order to properly model nucleosynthetic pathways. One key region of the nuclear landscape which remains relatively unexplored is neutron rich nuclei surrounding the $N=126$ shell closure. This is due to the difficulty in producing these nuclei using conventional methods such as fragmentation reactions or fission. Multi-nucleon transfer (MNT) reactions between two heavy ions provide an alternate method for producing nuclei near the $N=126$ shell closure with relatively large reaction cross sections.

At Argonne National Laboratory, the N=126 Factory is being developed to employ MNT reactions to produce these neutron rich nuclei near the $N=126$ shell closure. At the N=126 Factory, MNT products are captured in a large volume gas catcher and converted into a low energy beam, which is then accelerated through a dipole separator magnet ($R\sim 10^3$), cooled and bunched, and finally tuned through an MR-TOF system ($R\sim 10^5$). The result is an isotopically pure bunched beam which can be directed towards experimental substations including the CPT high-precision mass spectrometer, a new laser spectroscopy setup, and the RACCOONS decay station. In this presentation I will give an overview of the N=126 Factory and discuss the ongoing commissioning of the facility.

This work is supported in part by the U.S. Department of Energy Office of Nuclear Physics, under Contract No. DE-AC02-06CH11357; by NSERC (Canada), Application No. SAPPJ-2018-00028; by the Nuclear Science Foundation under Grant No. PHY-2310059; by the University of Notre Dame; and with resources of ANL's ATLAS facility, an Office of Science User Facility.

Authors

Matthew Martin (Argonne National Laboratory) Max Brodeur (University of Notre Dame) Jason Clark (Argonne National Laboratory) Alicen Houff (University of Notre Dame) Russell Knaack (Argonne National Laboratory) Oscar Kubiniec (Argonne National Laboratory) Aiden LaLiberte (University of Chicago / Argonne National Laboratory) Biying Liu (University of Notre Dame) Bernhard Maass (Argonne National Laboratory) Anandini Mitra (University of Notre Dame / Argonne National Laboratory) Sam Porter (University of Notre Dame) Caleb Quick (University of Notre Dame / Argonne National Laboratory) Eric Souza Costa Ribeiro (University of Notre Dame) John Rohrer (Argonne National Laboratory) Guy Savard (Argonne National Laboratory / University of Chicago) Adrian Valverde (Argonne National Laboratory)

Presentation materials

There are no materials yet.