Universal relationship betweenTcand the hole content inp-type cuprate superconductors
Author:
Publisher
American Physical Society (APS)
Subject
General Physics and Astronomy
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevLett.70.1697/fulltext
Reference20 articles.
1. Temperature Dependence of the Resistivity Tensor in SuperconductingBi2Sr2.2Ca0.8Cu2O8Crystals
2. Basic similarities among cuprate, bismuthate, organic, Chevrel-phase, and heavy-fermion superconductors shown by penetration-depth measurements
3. Universal Correlations betweenTcandnsm*(Carrier Density over Effective Mass) in High-TcCuprate Superconductors
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1. Alternating Magnetic Shielding and Resistivity in High Critical Temperature Superconductors (Y$$_{1-x}$$Ln$$_x$$)SrBaCu$$_3$$O$$_{6+\delta }$$ (x $$=$$ 0, 5 and 1, Ln $$=$$ rare earth);SpringerBriefs in Materials;2024
2. Effects of Isovalent Substitutions and Argon Heat Treatment on the Structural and Superconducting Properties of Y$$_{0.5}$$Ln$$_{0.5}$$SrBaCu$$_3$$O$$_{6+\delta }$$;SpringerBriefs in Materials;2024
3. Tc Saturation and Possible Electronic Phase Separation in Strongly Overdoped Cuprates;Condensed Matter;2023-07-05
4. Impact of Heat Treatments and Hole Density (p) on the Structural, Electrical, and Superconducting Properties of LnSrBaCu<sub>3</sub>O<sub>6+z</sub> (Ln = Eu, Sm, Nd) Compounds;Communications and Network;2023
5. Energy-length scaling of critical phase fluctuations in the cuprate pseudogap phase;Frontiers in Physics;2022-10-12
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