Distinct Nature of Static and Dynamic Magnetic Stripes in Cuprate Superconductors

We present detailed neutron scattering studies of the static and dynamic stripes in an optimally doped high-temperature superconductor, La_{2}CuO_{4+y}. We observe that the dynamic stripes do not disperse towards the static stripes in the limit of vanishing energy transfer. Therefore, the dynamic st...

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Bibliographic Details
Published in:Physical review letters Vol. 120; no. 3; p. 037003
Main Authors: Jacobsen, H, Holm, S L, Lăcătuşu, M-E, Rømer, A T, Bertelsen, M, Boehm, M, Toft-Petersen, R, Grivel, J-C, Emery, S B, Udby, L, Wells, B O, Lefmann, K
Format: Journal Article
Language:English
Published: United States American Physical Society 18-01-2018
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Summary:We present detailed neutron scattering studies of the static and dynamic stripes in an optimally doped high-temperature superconductor, La_{2}CuO_{4+y}. We observe that the dynamic stripes do not disperse towards the static stripes in the limit of vanishing energy transfer. Therefore, the dynamic stripes observed in neutron scattering experiments are not the Goldstone modes associated with the broken symmetry of the simultaneously observed static stripes, and the signals originate from different domains in the sample. These observations support real-space electronic phase separation in the crystal, where the static stripes in one phase are pinned versions of the dynamic stripes in the other, having slightly different periods. Our results explain earlier observations of unusual dispersions in underdoped La_{2-x}Sr_{x}CuO_{4} (x=0.07) and La_{2-x}Ba_{x}CuO_{4} (x=0.095).
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FG02-00ER45801
USDOE Office of Science (SC), Basic Energy Sciences (BES)
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.120.037003