High Magnetic Field Science and Its Application in the United States
National Academies Press (Verlag)
978-0-309-38778-1 (ISBN)
- Titel ist leider vergriffen;
keine Neuauflage - Artikel merken
A magnetic field is produced by an electrical current in a metal coil. This current exerts an expansive force on the coil, and a magnetic field is "high" if it challenges the strength and current-carrying capacity of the materials that create the field. Although lower magnetic fields can be achieved using commercially available magnets, research in the highest achievable fields has been, and will continue to be, most often performed in large research centers that possess the materials and systems know-how for forefront research. Only a few high field centers exist around the world; in the United States, the principal center is the National High Magnetic Field Laboratory (NHMFL).
High Magnetic Field Science and Its Application in the United States considers continued support for a centralized high-field facility such as NHFML to be the highest priority. This report contains a recommendation for the funding and siting of several new high field nuclear magnetic resonance magnets at user facilities in different regions of the United States. Continued advancement in high-magnetic field science requires substantial investments in magnets with enhanced capabilities. High Magnetic Field Science and Its Application in the United States contains recommendations for the further development of all-superconducting, hybrid, and higher field pulsed magnets that meet ambitious but achievable goals.
Table of Contents
Front Matter
Executive Summary
1 Overview
2 Science Drivers - Condensed Matter and Materials Physics
3 High Magnetic Fields in Chemistry, Biochemistry, and Biology
4 Medical and Life Science Studies (MRI, fMRI, MRS) Enabled by 20 Tesla
5 Other High-Field Magnet Applications
6 Combining High Magnetic Fields with Scattering and Optical Probes
7 Magnet Technology Development
8 International Landscape of High-Magnetic-Field Facilities
9 Stewardship and Related Issues
Appendixes
Appendix A: Charge to the Committee
Appendix B: Input from the Community
Appendix C: Committee Meeting Agendas
Appendix D: Committee Member Biographies
Appendix E: Glossary
Appendix F: MRI - Safety and Potential Health Effects
Appendix G: Short Description of Large Research Facilities for High Magnetic Fields
1 Front Matter; 2 Executive Summary; 3 1 Overview; 4 2 Science Drivers - Condensed Matter and Materials Physics; 5 3 High Magnetic Fields in Chemistry, Biochemistry, and Biology; 6 4 Medical and Life Science Studies (MRI, fMRI, MRS) Enabled by 20 Tesla; 7 5 Other High-Field Magnet Applications; 8 6 Combining High Magnetic Fields with Scattering and Optical Probes; 9 7 Magnet Technology Development; 10 8 International Landscape of High-Magnetic-Field Facilities; 11 9 Stewardship and Related Issues; 12 Appendixes; 13 Appendix A: Charge to the Committee; 14 Appendix B: Input from the Community; 15 Appendix C: Committee Meeting Agendas; 16 Appendix D: Committee Member Biographies; 17 Appendix E: Glossary; 18 Appendix F: MRI - Safety and Potential Health Effects; 19 Appendix G: Short Description of Large Research Facilities for High Magnetic Fields
Erscheint lt. Verlag | 25.11.2013 |
---|---|
Verlagsort | Washington |
Sprache | englisch |
Maße | 178 x 254 mm |
Themenwelt | Naturwissenschaften ► Physik / Astronomie ► Elektrodynamik |
ISBN-10 | 0-309-38778-7 / 0309387787 |
ISBN-13 | 978-0-309-38778-1 / 9780309387781 |
Zustand | Neuware |
Haben Sie eine Frage zum Produkt? |
aus dem Bereich