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Molecular energy transfer

Molecular energy transfer research highlights could further improve the performance colleagues find a beautiful example of this Perovskite photovoltaics of such hybrid solar cells. CM correspondence in uranium nitride, a rock Science 338, 643–647 (2012) salt-like structure that has recently been put forward as a possible fuel for next-generation nuclear reactors. Using a time-of-flight Phys. Rev. Lett. (In the press); neutron scattering approach they observe, http:/ /arxiv.org /abs/1110.0457 (2012) in addition to the usual phonon modes, a Since the early work of Edward Purcell it has set of clear and equally spaced high-energy been recognized that the electromagnetic vibrational modes. This spectrum is best environment affects the spontaneous explained by assuming that each nitrogen emission rate of individual excited atoms atom behaves as an independent harmonic and molecules. Much less studied is the oscillator trapped within an octahedral cage effect that the environment has on the of heavy uranium atoms. The researchers energy transfer rate between pairs of closely therefore conclude that uranium nitride spaced molecules. Previous studies indicated is an ideal experimental realization of a that this rate depends strongly on the quantum harmonic oscillator, one of the few environment, while others reported weak quantum mechanical models that can be or no http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Nature Materials Springer Journals

Molecular energy transfer

Nature Materials , Volume 11 (12) – Nov 23, 2012

Molecular energy transfer

Abstract

research highlights could further improve the performance colleagues find a beautiful example of this Perovskite photovoltaics of such hybrid solar cells. CM correspondence in uranium nitride, a rock Science 338, 643–647 (2012) salt-like structure that has recently been put forward as a possible fuel for next-generation nuclear reactors. Using a time-of-flight Phys. Rev. Lett. (In the press); neutron scattering approach they observe, http:/ /arxiv.org /abs/1110.0457 (2012) in addition...
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Publisher
Springer Journals
Copyright
Copyright © 2012 by Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
Subject
Materials Science; Materials Science, general; Optical and Electronic Materials; Biomaterials; Nanotechnology; Condensed Matter Physics
ISSN
1476-1122
eISSN
1476-4660
DOI
10.1038/nmat3514
Publisher site
See Article on Publisher Site

Abstract

research highlights could further improve the performance colleagues find a beautiful example of this Perovskite photovoltaics of such hybrid solar cells. CM correspondence in uranium nitride, a rock Science 338, 643–647 (2012) salt-like structure that has recently been put forward as a possible fuel for next-generation nuclear reactors. Using a time-of-flight Phys. Rev. Lett. (In the press); neutron scattering approach they observe, http:/ /arxiv.org /abs/1110.0457 (2012) in addition to the usual phonon modes, a Since the early work of Edward Purcell it has set of clear and equally spaced high-energy been recognized that the electromagnetic vibrational modes. This spectrum is best environment affects the spontaneous explained by assuming that each nitrogen emission rate of individual excited atoms atom behaves as an independent harmonic and molecules. Much less studied is the oscillator trapped within an octahedral cage effect that the environment has on the of heavy uranium atoms. The researchers energy transfer rate between pairs of closely therefore conclude that uranium nitride spaced molecules. Previous studies indicated is an ideal experimental realization of a that this rate depends strongly on the quantum harmonic oscillator, one of the few environment, while others reported weak quantum mechanical models that can be or no

Journal

Nature MaterialsSpringer Journals

Published: Nov 23, 2012

There are no references for this article.