The electrodynamic response of the spin-ladder compound Sr14−xCaxCu24O41 (x=0,3,9) has been studied from radiofrequencies up to the infrared. At temperatures below 250 K a pronounced absorption peak appears around 12 cm−1 in Sr14Cu24O41 for the radiation polarized along the chains/ladders (E∥c). In addition a strongly temperature dependent dielectric relaxation is observed in the kHz - MHz range. We explain this behavior by a charge density wave which develops in the ladders sub-system and produces a mode pinned at 12 cm−1. With increasing Ca doping the mode shifts up in frequency and eventually disappears for x=9 because the dimensionality of the system crosses over from one to two dimensions, giving way to the superconducting ground state under pressure.
@article{arxiv.cond-mat/0201413,
title = {Charge-density wave formation in Sr_{14}Cu_{24}O_{41}},
author = {B. Gorshunov and P. Haas and T. Rõõm and M. Dressel and T. Vuletic and B. Hamzic and S. Tomic and J. Akimitsu and T. Nagata},
journal= {arXiv preprint arXiv:cond-mat/0201413},
year = {2009}
}
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One name added to author list 4 pages, 2 figures, email: [email protected]