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Long-lived nuclear spin order: theory and applications

Long-lived nuclear spin order: theory and applications
Long-lived nuclear spin order: theory and applications
The idea that a long-lived form of spin order, namely singlet order, can be prepared from nuclear spin magnetisation first emerged in 2004. The unusual properties of singlet order–its long lifetime and the fact that it is NMR silent but interconvertible into other forms of NMR active order—make it a ‘smart tag’ that can be used to store information for a long time or through distant space points. It is not unexpected then, that since its first appearance, this idea has caught the attention of research groups interested in exploiting this form of order in different fields of research spanning from biology to materials science and from hyperpolarisation to quantum computing.

This first book on the subject gives a thorough description of the various aspects that affect the development of the topic and details the interdisciplinary applications. The book starts with a section dedicated to the basic theories of long-lived spin order and then proceeds with a description of the state-of-the-art experimental techniques developed to manipulate singlet order. It then concludes by covering the generalization of the concept of singlet order by introducing and discussing other forms of long-lived spin order.
2044-2548
Royal Society of Chemistry
Pileio, Giuseppe
13f78e66-0707-4438-b9c9-6dbd3eb7d4e8
Pileio, Giuseppe
13f78e66-0707-4438-b9c9-6dbd3eb7d4e8

Pileio, Giuseppe (2020) Long-lived nuclear spin order: theory and applications (New Developments in NMR), London. Royal Society of Chemistry, 442pp.

Record type: Book

Abstract

The idea that a long-lived form of spin order, namely singlet order, can be prepared from nuclear spin magnetisation first emerged in 2004. The unusual properties of singlet order–its long lifetime and the fact that it is NMR silent but interconvertible into other forms of NMR active order—make it a ‘smart tag’ that can be used to store information for a long time or through distant space points. It is not unexpected then, that since its first appearance, this idea has caught the attention of research groups interested in exploiting this form of order in different fields of research spanning from biology to materials science and from hyperpolarisation to quantum computing.

This first book on the subject gives a thorough description of the various aspects that affect the development of the topic and details the interdisciplinary applications. The book starts with a section dedicated to the basic theories of long-lived spin order and then proceeds with a description of the state-of-the-art experimental techniques developed to manipulate singlet order. It then concludes by covering the generalization of the concept of singlet order by introducing and discussing other forms of long-lived spin order.

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Published date: 15 April 2020

Identifiers

Local EPrints ID: 442418
URI: http://eprints.soton.ac.uk/id/eprint/442418
ISSN: 2044-2548
PURE UUID: 9606d692-89da-441e-81a3-8ed71941f247
ORCID for Giuseppe Pileio: ORCID iD orcid.org/0000-0001-9223-3896

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Date deposited: 15 Jul 2020 16:31
Last modified: 17 Mar 2024 03:03

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