Magnetically Activated and Guided Isotope Separation
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"Magnetically Activated and Guided Isotope Separation" by Thomas R. Mazur is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.
This thesis describes a proof-of-principle experiment demonstrating a technique for stable isotope enrichment called Magnetically Activated and Guided Isotope Separation (MAGIS). Over the past century many enriched isotopes have become available, thanks largely to electromagnetic separators called calutrons. Due to substantial maintenance and operating costs, the United States decommissioned the last of its calutrons in 1998, leading to demand for alternative methods of isotope separation. The work presented here suggests the promise for MAGIS as a viable alternative to the calutrons. The MAGIS technique combines optical pumping with a scalable magnetic field gradient to enrich atoms of a specific isotope in an atomic beam. Benchmarking this work against the calutron using lithium as a test case, the author demonstrated comparable enrichment in a manner that should scale to the production of similar quantities, while requiring vastly less energy input.
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"Magnetically Activated and Guided Isotope Separation" by Thomas R. Mazur is a astronomy book and space science reference focused on Cosmology. Best for students, researchers, and serious astronomy enthusiasts.
Topic: Cosmology
Author: Thomas R. Mazur
Who this is for:
- Astronomy students
- Researchers and advanced hobbyists
- Readers exploring space science topics
Why this book matters: It matters because it helps readers build a stronger understanding of astronomy concepts, observations, and scientific ideas related to space.
This thesis describes a proof-of-principle experiment demonstrating a technique for stable isotope enrichment called Magnetically Activated and Guided Isotope Separation (MAGIS). Over the past century many enriched isotopes have become available, thanks largely to electromagnetic separators called calutrons. Due to substantial maintenance and operating costs, the United States decommissioned the last of its calutrons in 1998, leading to demand for alternative methods of isotope separation. The work presented here suggests the promise for MAGIS as a viable alternative to the calutrons. The MAGIS technique combines optical pumping with a scalable magnetic field gradient to enrich atoms of a specific isotope in an atomic beam. Benchmarking this work against the calutron using lithium as a test case, the author demonstrated comparable enrichment in a manner that should scale to the production of similar quantities, while requiring vastly less energy input.
| Author | Thomas R. Mazur |
| Publisher | Springer |
| Published | 2015-11-30 |
| ISBN-13 | 9783319239545 |
| Binding | Hardcover |
| Language | English |
| Subjects | Science |
| Topic | Cosmology |
| Series | Springer Theses |
Format: Hardcover
Language: English
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