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
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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