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Magnetic Moment Measurements Using Alpha Transfer Reactions-Challenges and Perspectives

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Basic Concepts in Nuclear Physics: Theory, Experiments and Applications

Part of the book series: Springer Proceedings in Physics ((SPPHY,volume 182))

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Abstract

The use of \(\alpha \)-transfer reactions, in combination with the Transient Field Technique, is an alternative to measure magnetic moments of low-spin states of radioactive nuclei which, otherwise, will be difficult to populate with the present beam facilities. In this contributions a short introduction to the technique and the challenges for future uses are presented.

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References

  1. G.J. Kumbartzki, Nuclear magnetic moments, a guide to transient field experiments (2015), http://www.physics.rutgers.edu/kum/tfbook.pdf. Accessed 3 Oct 2015

  2. N. Benczer-Koller, G.J. Kumbartzki, Magnetic moments of short-lived excited nuclear states: measurements and challenges. J. Phys. G: Nucl. Part. Phys. 34, R321 (2007), http://stacks.iop.org/0954-3899/34/i=9/a=R01. Accessed 3 Oct 2015

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  3. D.A. Torres, F. Ramirez, Nuclear structure aspects via g-factor measurements: pushing the frontiers, in Proceedings of Science Physics Review C (2014). http://pos.sissa.it/archive/conferences/194/021/X%20LASNPA_021.pdf. Accessed 3 Oct 2015

  4. D.A. Torres et al., First \(g\)-factor measurements of the 2\(^+\) and the \(4^+\) states of radioactive \(^{100}\)Pd. Phys. Rev. C 84, 044327 (2011) doi:10.1103/PhysRevC.84.044327. http://link.aps.org/doi/10.1103/PhysRevC.84.044327. Accessed 3 Oct 2015

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Acknowledgments

This work was supported in part by the Colombian agency for the development of science, COLCIENCIAS, under contract 110165842984, and Universidad Nacional de Colombia.

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Correspondence to F. Ramírez .

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Ramírez, F., Torres, D.A. (2016). Magnetic Moment Measurements Using Alpha Transfer Reactions-Challenges and Perspectives. In: García-Ramos, JE., Alonso, C., Andrés, M., Pérez-Bernal, F. (eds) Basic Concepts in Nuclear Physics: Theory, Experiments and Applications. Springer Proceedings in Physics, vol 182. Springer, Cham. https://doi.org/10.1007/978-3-319-21191-6_12

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