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      Observation of Individual Josephson Vortices in YBCO Bicrystal Grain-boundary Junctions

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          Abstract

          The response of YBCO bicrystal grain-boundary junctions to small dc magnetic fields (0 - 10 Oe) has been probed with a low-power microwave (rf) signal of 4.4 GHz in a microwave-resonator setup. Peaks in the microwave loss at certain dc magnetic fields are observed that result from individual Josephson vortices penetrating into the grain-boundary junctions under study. The system is modeled as a long Josephson junction described by the sine-Gordon equation with the appropriate boundary conditions. Excellent quantitative agreement between the experimental data and the model has been obtained. Hysteresis effect of dc magnetic field is also studied and the results of measurement and calculation are compared.

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          Nonlinear surface impedance forYBa2Cu3O7−xthin films: Measurements and a coupled-grain model

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            Meissner Effect and Vortex Penetration in Josephson Junctions

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              Measurements and modeling of the microwave impedance in high-\({T}_{c}\)grain-boundary Josephson junctions: Fluxon generation and rf Josephson-vortex dynamics

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                Author and article information

                Journal
                06 March 2000
                Article
                10.1103/PhysRevB.61.R14952
                cond-mat/0003058
                ce07441d-e5d6-438c-9cce-4952cc7b5785
                History
                Custom metadata
                11 pages, 4 figures
                cond-mat.supr-con

                Condensed matter
                Condensed matter

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