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Research proposal for development of an electron stripper using a thin liquid lithium film for rare isotope accelerator. (open access)

Research proposal for development of an electron stripper using a thin liquid lithium film for rare isotope accelerator.

Hydrodynamic instability phenomena in a thin liquid lithium film, which has been proposed for the first stripper in the driver linac of Rare Isotope Accelerator (RIA), were discussed. Since it was considered that film instability could significantly impair the feasibility of the liquid lithium film stripper concept, potential issues and research tasks in the RIA project due to these instability phenomena were raised. In order to investigate these instability phenomena, a research proposal plan was developed. In the theoretical part of this research proposal, a use of the linear stability theory was suggested. In the experimental part, it was pointed out that the concept of Reynolds number and Weber number scaling may allow conducting a preliminary experiment using inert simulants, hence reducing technical difficulty, complexity, and cost of the experiments. After confirming the thin film formation in the preliminary experiment using simulants, demonstration experiments using liquid lithium were proposed.
Date: March 6, 2006
Creator: Momozaki, Y.
Object Type: Report
System: The UNT Digital Library

Ensemble: 2006-10-06 – Jazz Vocal Forum

Access: Use of this item is restricted to the UNT Community
Ensemble concert performed at the UNT College of Music Lab East (M263).
Date: October 6, 2006
Creator: Jazz Vocal Forum
Object Type: Sound
System: The UNT Digital Library
Physics Division annual report 2004. (open access)

Physics Division annual report 2004.

This report highlights the research performed in 2004 in the Physics Division of Argonne National Laboratory. The Division's programs include operation of ATLAS as a national user facility, nuclear structure and reaction research, nuclear theory, medium energy nuclear research and accelerator research and development. The intellectual challenges of this research represent some of the most fundamental challenges in modern science, shaping our understanding of both tiny objects at the center of the atom and some of the largest structures in the universe. A great strength of these efforts is the critical interplay of theory and experiment. Notable results in research at ATLAS include a measurement of the charge radius of He-6 in an atom trap and its explanation in ab-initio calculations of nuclear structure. Precise mass measurements on critical waiting point nuclei in the rapid-proton-capture process set the time scale for this important path in nucleosynthesis. An abrupt fall-off was identified in the subbarrier fusion of several heavy-ion systems. ATLAS operated for 5559 hours of research in FY2004 while achieving 96% efficiency of beam delivery for experiments. In Medium Energy Physics, substantial progress was made on a long-term experiment to search for the violation of time-reversal invariance using trapped Ra …
Date: April 6, 2006
Creator: Glover, J.
Object Type: Report
System: The UNT Digital Library