Charge Transport in the Insulating State of(DMe−DCNQI)2LiaboveTSP: A Possible Fractional Charge Soliton Conduction with±12e
Author:
Publisher
American Physical Society (APS)
Subject
General Physics and Astronomy
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevLett.91.056604/fulltext
Reference14 articles.
1. Temperature dependence of the electronic spin relaxation of DCNQI salts
2. Reflectance Spectra and Electrical Resistivity of (Me2-DCNQI)2Li1-xCux
3. Low-frequency dielectric response of charge-density wave pinned by commensurability in (2,5(OCH 3 ) 2 DCNQI) 2 Li
4. X-ray scattering evidence for dimerization (4 kF) and spin-Peierls distortion (2 kF) in silver salts of dicyanoquinodiimine (2,5 MR-DCNQI )2 Ag (R = CH3, Cl or Br, M = CH3)
5. Fractionally Charged States in One-Dimensional Electron-Phonon Systems with Commensurability 3
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1. Spin Dynamics in the Mixed Stack Charge Transfer Complex, (BEDO-TTF)(Cl2TCNQ);Journal of the Physical Society of Japan;2020-07-15
2. Fractionally Charged Solitons in “1100” Charge Order Backgrounds;Journal of the Physical Society of Japan;2015-03-15
3. Dynamics of Fractionally Charged Phase Soliton in One-Dimensional Quarter-Filled Electron–Lattice Systems;Journal of the Physical Society of Japan;2013-10-15
4. Spin density distribution and electronic states in(DMe−DCNQI)2M(M=Li,Ag,Cu)from high-resolution solid-state NMR;Physical Review B;2007-07-31
5. EPR Study of the Electronic States of β’-(BEDT-TTF)(TCNQ);Journal of Low Temperature Physics;2007-01-20
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