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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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Significance of out-of-plane electronic contributions in Bi-cuprates studied by resonant photoelectron spectroscopy at the Cu2p edge

Christoph Janowitz and Dieter Schmeißer
Superconductor Science and Technology 31 (4) 045006 (2018)
https://doi.org/10.1088/1361-6668/aaadf6

From spin-Peierls to superconductivity: (TMTTF)2PF6under high pressure

D Jaccard, H Wilhelm, D Jérome, et al.
Journal of Physics: Condensed Matter 13 (4) L89 (2001)
https://doi.org/10.1088/0953-8984/13/4/104

Phase transitions in the superconducting compoundLu5Rh4Si10at ambient and high pressure

H. D. Yang, P. Klavins and R. N. Shelton
Physical Review B 43 (10) 7676 (1991)
https://doi.org/10.1103/PhysRevB.43.7676

Superconductivity enhancement and CDW gap formation-NMR study of the pressure and impurity effects in NbSe3

S Wada, M Kaburagi, Y Saito and R Aoki
Journal of Physics F: Metal Physics 18 (6) 1231 (1988)
https://doi.org/10.1088/0305-4608/18/6/025

Charge density wave transition and superconductivity in 2H-NbSe2. Direct measurement of the penetration depth in a layered superconductor

K. Takita and K. Masuda
Journal of Low Temperature Physics 58 (1-2) 127 (1985)
https://doi.org/10.1007/BF00682569

X-Ray Diffuse Scattering Study of Some (TMTSF)2X and (TMTTF)2X Salts

J. P. Pouget, R. Moret, R. Comes, et al.
Molecular Crystals and Liquid Crystals 79 (1) 485 (1982)
https://doi.org/10.1080/00268948208070995

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

S S P Parkin, M Ribault, D Jerome and K Bechgaard
Journal of Physics C: Solid State Physics 14 (34) 5305 (1981)
https://doi.org/10.1088/0022-3719/14/34/011

Comparative X ray diffuse scattering studies of some superconducting and non superconducting 1 : 2 salts (TMTSF)2X and (TMTTF)2X; with X = PF6, AsF6, ClO4, NO3

J.P. Pouget, R. Comés, K. Bechgaard, J.M. Fabre and L. Giral
Physica B+C 108 (1-3) 1187 (1981)
https://doi.org/10.1016/0378-4363(81)90894-9

Charge density wave formation, superconductivity and Fermi surface determination in NbSe3: a pressure study

A Briggs, P Monceau, M Nunez-Regueiro, et al.
Journal of Physics C: Solid State Physics 13 (11) 2117 (1980)
https://doi.org/10.1088/0022-3719/13/11/011

Periodic lattice distortions and charge density waves in one- and two-dimensional metals

R H Friend and D Jerome
Journal of Physics C: Solid State Physics 12 (8) 1441 (1979)
https://doi.org/10.1088/0022-3719/12/8/009

NMR study on a 2H-NbSe2single crystal: A microscopic investigation of the charge density waves state

C Berthier
Journal of Physics C: Solid State Physics 11 (4) 797 (1978)
https://doi.org/10.1088/0022-3719/11/4/024

The effect of pressure on the charge density wave transitions in 4H b TaS2

R. H. Friend, R. F. Frindt, D. Jérome and A. J. Grant
Il Nuovo Cimento B Series 11 38 (2) 554 (1977)
https://doi.org/10.1007/BF02723531

Pressure effect on the charge-density-wave formation in2H−NbSe2and correlation between structural instabilities and superconductivity in unstable solids

C. W. Chu, V. Diatschenko, C. Y. Huang and F. J. DiSalvo
Physical Review B 15 (3) 1340 (1977)
https://doi.org/10.1103/PhysRevB.15.1340

Electrical conductivity and charge density wave formation in 4HbTaS2under pressure

R H Friend, R F Frindt, A J Grant, A D Yoffe and D Jerome
Journal of Physics C: Solid State Physics 10 (7) 1013 (1977)
https://doi.org/10.1088/0022-3719/10/7/011

Charge density waves in layer structures: A NMR study on a 2HNbSe2 single crystal

C. Berthier, D. Jérome, P. Molinié and J. Rouxel
Solid State Communications 19 (2) 131 (1976)
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Evidence for a connection between charge density waves and the pressure enhancement of superconductivity in 2H-NbSe2

C. Berthier, P. Molinié and D. Jérome
Solid State Communications 18 (9-10) 1393 (1976)
https://doi.org/10.1016/0038-1098(76)90986-8