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Theory of the Nuclear Magnetic 1/T1 Relaxation Rate in Conventional and Unconventional Magnets

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

One of the best ways to "lift the lid" on what is happening inside a given material is to study it using nuclear magnetic resonance (NMR). Of particular interest are NMR 1/T1 relaxation rates, which measure how fast energy stored in magnetic nuclei is transferred to surrounding electrons.

This thesis develops a detailed, quantitative theory of NMR 1/T1 relaxation rates, and shows for the first time how they could be used to measure the speed at which energy travels in a wide range of magnetic materials.

This theory is used to make predictions for"Quantum Spin Nematics", an exotic form of quantum order analogous to a liquid crystal. In order to do so, it is first necessary to unravel how spin nematics transport energy. This thesis proposes a new way to do this, based on the description of quarks in high-energy physics.

Experiments to test the ideas presented are now underway in laboratories across the world.

Riassunto

One of the best ways to "lift the lid" on what is happening inside a given material is to study it using nuclear magnetic resonance (NMR). Of particular interest are NMR 1/T1 relaxation rates, which measure how fast energy stored in magnetic nuclei is transferred to surrounding electrons.


 


This thesis develops a detailed, quantitative theory of NMR 1/T1 relaxation rates, and shows for the first time how they could be used to measure the speed at which energy travels in a wide range of magnetic materials.


 


This theory is used to make predictions for"Quantum Spin Nematics", an exotic form of quantum order analogous to a liquid crystal.  In order to do so, it is first necessary to unravel how spin nematics transport energy. This thesis proposes a new way to do this, based on the description of quarks in high-energy physics.


 


Experiments to test the ideas presented are now underway in laboratories across the world.

Dettagli sul prodotto

Autori Andrew Smerald
Editore Springer, Berlin
 
Contenuto Libro
Forma del prodotto Copertina rigida
Data pubblicazione 01.09.2013
Categoria Scienze naturali, medicina, informatica, tecnica > Fisica, astronomia > Fisica atomica, fisica nucleare
 
EAN 9783319004334
ISBN 978-3-31-900433-4
Numero di pagine 165
Illustrazioni XVI, 165 p.
Dimensioni (della confezione) 16.2 x 1.6 x 24.2 cm
Peso (della confezione) 414 g
 
Serie Springer Theses
Springer Theses
Categorie Physik, B, Quantenphysik (Quantenmechanik und Quantenfeldtheorie), Quantum Physics, Nuclear physics, Quantum physics (quantum mechanics & quantum field theory), Physics and Astronomy, Magnetism, Magnetic materials, Magnetism, Magnetic Materials, Particle and Nuclear Physics, Nuclear and Particle Physics, Particle & high-energy physics
 

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