Nonlinear lattice-relaxation process of excitons in quasi-one-dimensional halogen-bridged mixed-valence metal complexes: Self-trapping, solitons, and polarons
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.45.1605/fulltext
Reference19 articles.
1. Charge Transfer Exciton in Halogen-Bridged Mixed-Valent Pt and Pd Complexes: Analysis Based on the Peierls-Hubbard Model
2. Electric-field effects on the charge-transfer excitation in quasi-one-dimensional halogen-bridged mixed-valence Pt complexes: [Pt(ethylenediamine)2] [Pt(ethylenediamine)2X2](ClO4)4(X=Cl,Br,I)
3. Relaxation of Electron-Phonon System in Optically Excited Quasi-1-D Mixed Valence Crystal Wolffram's Red Salt
4. Resonance Raman and luminescence studies on the quasi-one dimensional crystals of [Pt(en)z][Pt(en)2Cl2](ClO4)4
5. Luminescence lifetimes in halogen bridged mixed valence metal complexes
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2. Wavepacket Motion in Self-Trapped Exciton of Quasi-One-Dimensional Halogen-Bridged Pt Complex, [Pt(en)2][Pt(en)2I2] (ClO4)4, Observed by Femtosecond Time Resolved Luminescence Spectroscopy;Journal of the Physical Society of Japan;2008-06-15
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4. Wavepacket Dynamics at Low Temperature in Localized Excitons of the Quasi-One-Dimensional Br-Bridged Pt Complex Studied by Femtosecond Luminescence Spectroscopy;Journal of the Physical Society of Japan;2007-08-15
5. Ultrafast time-resolved infrared luminescence spectroscopy in halogen-bridged Pd complexes;physica status solidi (c);2006-11
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