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Cited article:

Quasi one-dimensional organic conductors: from Fröhlich conductivity and Peierls insulating state to magnetically-mediated superconductivity, a retrospective

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Comptes Rendus. Physique 25 (G1) 17 (2024)
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Towards a consistent picture for quasi-1D organic superconductors

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Linear-T scattering and pairing from antiferromagnetic fluctuations in the (TMTSF)2X organic superconductors

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The European Physical Journal B 78 (1) 23 (2010)
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Correlation between linear resistivity andTcin the Bechgaard salts and the pnictide superconductorBa(Fe1−xCox)2As2

Nicolas Doiron-Leyraud, Pascale Auban-Senzier, Samuel René de Cotret, et al.
Physical Review B 80 (21) (2009)
https://doi.org/10.1103/PhysRevB.80.214531

The Physics of Organic Superconductors and Conductors

C. Bourbonnais and D. Jérome
Springer Series in Materials Science, The Physics of Organic Superconductors and Conductors 110 357 (2008)
https://doi.org/10.1007/978-3-540-76672-8_12

Organic Conductors:  From Charge Density Wave TTF−TCNQ to Superconducting (TMTSF)2PF6

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Chemical Reviews 104 (11) 5565 (2004)
https://doi.org/10.1021/cr030652g

Charge- and spin-density waves in existing superconductors: competition between Cooper pairing and Peierls or excitonic instabilities

A.M. Gabovich, A.I. Voitenko and M. Ausloos
Physics Reports 367 (6) 583 (2002)
https://doi.org/10.1016/S0370-1573(02)00029-7

Impurity breakdown and electric-field-dependent luminescence in MBE and VPE GaAs layers

F Karel, J Oswald, J Pastrnak and O Petricek
Semiconductor Science and Technology 7 (2) 203 (1992)
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Proceedings of the Yamada Conference XV on Physics and Chemistry of Quasi One-Dimensional Conductors

H.J. SCHULZ
Proceedings of the Yamada Conference XV on Physics and Chemistry of Quasi One-Dimensional Conductors 456 (1986)
https://doi.org/10.1016/B978-1-4832-2812-9.50134-8

Internal Friction at Low Temperature in High Purity Magnesium

G. Fantozzi, C. Esnoitf, J. Lauzieb and C. Mustier
Physica Status Solidi (a) 85 (2) 463 (1984)
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Tetramethyltetraselenafulvalene salts [(TMTSF)2X]: Anisotropy and effective dimensionality of the Fermi surface

J. F. Kwak
Physical Review B 26 (8) 4789 (1982)
https://doi.org/10.1103/PhysRevB.26.4789

The Design, Synthesis and Characterization of the Molecular Components of Organic Conductors

D. O. Cowan, A. Kini, L-Y. Chiang, et al.
Molecular Crystals and Liquid Crystals 86 (1) 1 (1982)
https://doi.org/10.1080/00268948208073664

The influence of band filling on the phase diagram of one-dimensional conductors

Chr Seidel and V. N. Prigodin
Journal of Low Temperature Physics 48 (1-2) 85 (1982)
https://doi.org/10.1007/BF00681719

Insulating, conducting and superconducting states of (TMTSF)2AsF6 under pressure and magnetic field

R. Brusetti, M. Ribault, D. Jérome and K. Bechgaard
Journal de Physique 43 (5) 801 (1982)
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Itinerant-Electron Antiferromagnetism Precursor to Superconductivity in an Organic Conductor

W. M. Walsh, F. Wudl, E. Aharon-Shalom, et al.
Physical Review Letters 49 (12) 885 (1982)
https://doi.org/10.1103/PhysRevLett.49.885

The three dimensional stabilization of superconductivity at 12 K in the one dimensional organic superconductor (TMTSF)2PF6 under 11 kbar

A. Fournel, C. More, G. Roger, et al.
Journal de Physique Lettres 42 (19) 445 (1981)
https://doi.org/10.1051/jphyslet:019810042019044500

Three new superconducting members of the family of tetramethyltetraselenafulvalene (TMTSF) salts: TMTSF2CIO4, TMTSF2SbF6, TMTSF2TaF6

S S P Parkin, M Ribault, D Jerome and K Bechgaard
Journal of Physics C: Solid State Physics 14 (15) L445 (1981)
https://doi.org/10.1088/0022-3719/14/15/004

Superconductivity in the family of organic salts based on the tetramethyltetraselenafulvalene (TMTSF) molecule: (TMTSF)2X (X=ClO4, PF6, AsF6, SbF6, TaF6)

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Journal of Physics C: Solid State Physics 14 (34) 5305 (1981)
https://doi.org/10.1088/0022-3719/14/34/011