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Titlebook: Organic Superconductivity; Vladimir Z. Kresin,William A. Little Book 1990 Springer Science+Business Media New York 1990 Superconductor.cer

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Thallium-Based Copper Oxide Superconductorsproperties, including thermoelectric power data, are presented on a variety of phases in this system. A potential way to increase the critical temperature using site-selective doping is discussed A novel safe preparation procedure for Tl-Ba-Ca-Cu-O thin film preparation, wherein Tl is added through
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Fundamental Similarities between Organic and Cuprate Superconductors Shown by Muon Spin Relaxation Sabout 8000 Å at T → 0. This value corresponds to the superconducting carrier density n. = 1.6 × 10./cm. for an in-plane effective mass m* = 3.5m.. Comparisons with μSR results on high-T. cuprate superconductors demonstrate that both the present organic superconductor and the hole-doped cuprate syste
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Organics vs Cuprates: Why is Tc Still So Low in the Organicstors is carried out. The organics are found to have a short coherence length and, as a result, display two-gap structure. Many of the normal and superconducting parameters of the two classes of compounds are quite similar. However, the presence of nesting states in the organic conductors is an impor
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New Ambient Pressure Organic Superconductors: α-(BEDT-TTF)2(NH4)Hg(SCN)4, βm-(BEDO-TTF)3Cu2(NCS)3, aiafulvalene (abbreviated herein as ET). Several of the early salts possessed tetrahedral and octahedral anions, such as (ET).ClO.(TCE),. (ET).PF.,. (ET).ReO.,. and (ET).BrO. . The Perchlorate salt is metallic to 1.4 K,. and the perrenate derivative was the first ET based organic superconductor (T. 2
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The Electrodynamics of the Superconducting State of κ-(BEDT-TTF)2Cu(MCS)2rent orientations of the ac magnetic field with respect to the conducting layers. The behavior of λ(T) and R.(T) strongly suggests singlet pairing, and the anisotropy of the penetration depth and surface resistance are suggestive weakly coupled superconducting layers.
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