Ramasesha, S. (1996) Electron-electron interactions in polyacetylene Proceedings of the Indian Academy of Sciences - Chemical Sciences, 96 (6). pp. 509-521. ISSN 0253-4134
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Official URL: http://www.ias.ac.in/j_archive/chemsci/96/6/509-52...
Related URL: http://dx.doi.org/1007/BF02936302
Abstract
Experimental evidence for strong electron-electron interactions in polyacetylene is presented. These include (i) observation of a dipole forbidden state below the optical gap, (ii) observation of negative spin densities at sites at which noninteracting models predict zero spin density (iii) vanishing optical gap, in the infinite chain limit, in the closely related symmetrical linear cyanine dyes. To correctly explain these features it is necessary to solve correlated model Hamiltonians. Using diagrammatic valence bond method model exact solutions of correlated models of finite-size systems can be obtained and various physical properties of the low-lying states can be computed. These properties, when extrapolated to the infinite chain limit explain many of the experimental features observed in polyacetylene.
Item Type: | Article |
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Source: | Copyright of this article belongs to Indian Academy of Sciences. |
Keywords: | Electron Correlation; Valence Bond Method; Polyacetylene; Optical Gap; Spin Densities |
ID Code: | 39536 |
Deposited On: | 14 May 2011 05:06 |
Last Modified: | 17 May 2016 21:57 |
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