Determination of two-dimensional current patterns in flat superconductors from magneto-optical measurements: An efficient inversion scheme

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Abstract

An efficient inversion scheme is given to derive the local currents in a superconductor from the (Formula presented) component of the magnetic field measured above its surface, as is done using magneto-optical indicators. The method works for samples of arbitrary thickness provided that the current vector has only (Formula presented) and (Formula presented) components. Data storage is much lower and convergence much faster than in previously reported schemes. The influence of the distance of observation and of the sample aspect ratio on the measured field (Formula presented) is investigated. The current calculated from the magneto-optical observation of a real sample (a (Formula presented)(Formula presented)Ca(Formula presented)(Formula presented) single crystal) is in good agreement with the value measured directly by means of torque magnetometry. © 1996 The American Physical Society.

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Wijngaarden, R. J., Spoelder, H., Surdeanu, R., & Griessen, R. (1996). Determination of two-dimensional current patterns in flat superconductors from magneto-optical measurements: An efficient inversion scheme. Physical Review B - Condensed Matter and Materials Physics, 54(9), 6742–6749. https://doi.org/10.1103/PhysRevB.54.6742

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