Abstract
LaCuO 2.5 is a system of coupled, two-chain, cuprate spin ladders which may be doped systematically by Sr substitution. Motivated by the recent synthesis of single crystals, we conduct a theoretical analysis to seek superconductivity in this compound. We test this possibility within a model of spin fluctuation-mediated superconductivity, where the pairing potential is strongly peaked at π in the ladder direction. We solve the coupled gap equations on the bonding and antibonding ladder bands to find superconducting solutions across the range of doping, and discuss their relevance to the real material.
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