Influence of vortices on the magnetic resonance in cuprate superconductors

Eschrig, Matthias, Norman, M R and Janko, B

(2001)

Eschrig, Matthias, Norman, M R and Janko, B (2001) Influence of vortices on the magnetic resonance in cuprate superconductors. Physical Review B, 64 (13).

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Abstract

We investigate several theoretical possibilities for the suppression in a c-axis magnetic field of the magnetic resonance recently observed in inelastic neutron scattering experiments on YBa2Cu3O6.6. We find that neither the Doppler shift of the quasiparticle states caused by supercurrents outside the vortex core, nor an assumed spatially uniform suppression of the coherence factors or spectral gap due to the applied field, can account for the observed effect. In contrast, suppressing the gap or the coherence factors in the vortex core to zero is consistent with the data, and an even simpler description of the data can be achieved by assuming that the resonance is not supported within the core. These three models can then be used to estimate the effective radius ξeff around each vortex, which we find to be larger than xi (sc) but smaller than ξsc + ξmag, where ξsc and ξmag are respectively the superconducting and spin-spin correlation lengths. We use this observation to predict the doping dependence of the field suppression.

Information about this Version

This is a Submitted version
This version's date is: 1/10/2001
This item is not peer reviewed

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https://repository.royalholloway.ac.uk/items/b57199b7-0093-2edc-a16c-1e0b34a3b0ef/7/

Item TypeJournal Article
TitleInfluence of vortices on the magnetic resonance in cuprate superconductors
AuthorsEschrig, Matthias
Norman, M R
Janko, B
Uncontrolled KeywordsELECTRONIC-STRUCTURE, NEUTRON-SCATTERING, SPIN FLUCTUATIONS, VORTEX CORES, BI2SR2CACU2O8+DELTA, YBA2CU3O7-DELTA, YBA2CU3O6+X
DepartmentsFaculty of Science\Physics
Research Groups and Centres\Physics\Low Temperature Physics

Identifiers

doihttp://dx.doi.org/10.1103/PhysRevB.64.134509

Deposited by Research Information System (atira) on 18-Nov-2014 in Royal Holloway Research Online.Last modified on 18-Nov-2014


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