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Magnetic field induced lattice anomaly inside the superconducting state of CeCoIn5: evidence of the proposed Fulde-Ferrell-Larkin-Ovchinnikov state

V. F. Correa, T. P. Murphy, C. Martin, K. M. Purcell, E. C. Palm, G. M. Schmiedeshoff, J. C. Cooley, S. W. Tozer

cond-mat.str-elarXiv:cond-mat/0609487

Abstract

We report high magnetic field linear magnetostriction experiments on CeCoIn5 single crystals. Two features are remarkable: (i) a sharp discontinuity in all the crystallographic axes associated with the upper superconducting critical field Bc2 that becomes less pronounced as the temperature increases; (ii) a distinctive second order-like feature observed only along the c-axis in the high field (10 T B ≤ Bc2) low temperature (T 0.35 K) region. This second order transition is observed only when the magnetic field lies within 20o of the ab-planes and there is no signature of it above Bc2, which raises questions regarding its interpretation as a field induced magnetically ordered phase. Good agreement with previous results suggests that this anomaly is related to the transition to the Fulde-Ferrel-Larkin-Ovchinnikov superconducting state.

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