High Pressure Effects
James S. Schilling

TL;DR
This paper reviews how pressure affects superconducting properties in various materials, highlighting the unique increase of Tc in cuprates under pressure and supporting models emphasizing intraplanar pairing.
Contribution
It provides a comprehensive analysis of pressure effects on superconductors, emphasizing the role of CuO2 plane area reduction in Tc increase in cuprates.
Findings
Tc generally decreases under pressure in most superconductors
In cuprates, Tc increases with pressure due to CuO2 plane area reduction
Uniaxial pressure studies support intraplanar pairing models
Abstract
Experiments under hydrostatic and uniaxial pressure serve not only as a guide in the synthesis of materials with superior superconducting properties but also allow a quantitative test of theoretical models. In this chapter the pressure dependence of the superconducting properties of elemental, binary, and multi-atom superconductors are explored, with an emphasis on those exhibiting relatively high values of the transition temperature Tc. In contrast to the vast majority of superconductors, where Tc decreases under pressure, in the cuprate oxides Tc normally increases. Uniaxial pressure studies give evidence that this increase arises mainly from the reduction in the area of the CuO2 planes (Tc approximately proportional to inverse square area), rather than in the separation between the planes, thus supporting theoretical models which attribute the superconductivity primarily to…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Magnetic and transport properties of perovskites and related materials · Advanced Condensed Matter Physics
