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ISAC and ARIEL: The TRIUMF Radioactive Beam Facilities and the Scientific Program - A Laboratory Portrait of ISAC (Hardcover,... ISAC and ARIEL: The TRIUMF Radioactive Beam Facilities and the Scientific Program - A Laboratory Portrait of ISAC (Hardcover, 2014 ed.)
Jens Dilling, Reiner Krucken, Lia Merminga
R4,011 R3,628 Discovery Miles 36 280 Save R383 (10%) Ships in 12 - 17 working days

The TRIUMF Isotope Separator and Accelerator (ISAC) facility uses the isotope separation on-line (ISOL) technique to produce rare-isotope beams (RIB). The ISOL system consists of a primary production beam, a target/ion source, a mass separator, and beam transport system. The rare isotopes produced during the interaction of the proton beam with the target nucleus are stopped in the bulk of the target material. They diffuse inside the target material matrix to the surface of the grain and then effuse to the ion source where they are ionized to form an ion beam that can be separated by mass and then guided to the experimental facilities. Previously published in the journal Hyperfine Interactions.

ISAC and ARIEL: The TRIUMF Radioactive Beam Facilities and the Scientific Program - A Laboratory Portrait of ISAC (Paperback,... ISAC and ARIEL: The TRIUMF Radioactive Beam Facilities and the Scientific Program - A Laboratory Portrait of ISAC (Paperback, Softcover reprint of the original 1st ed. 2014)
Jens Dilling, Reiner Krucken, Lia Merminga
R3,323 R3,129 Discovery Miles 31 290 Save R194 (6%) Out of stock

The TRIUMF Isotope Separator and Accelerator (ISAC) facility uses the isotope separation on-line (ISOL) technique to produce rare-isotope beams (RIB). The ISOL system consists of a primary production beam, a target/ion source, a mass separator, and beam transport system. The rare isotopes produced during the interaction of the proton beam with the target nucleus are stopped in the bulk of the target material. They diffuse inside the target material matrix to the surface of the grain and then effuse to the ion source where they are ionized to form an ion beam that can be separated by mass and then guided to the experimental facilities. Previously published in the journal Hyperfine Interactions.

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