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- W2624715935 abstract "The nano-superconducting quantum interference device (SQUID) is considered one of the most sensitive magnetic sensors for the characterization of mesoscopic and microscopic magnetic moments. Therefore, it is suitable for measuring the Meissner effect in small superconductors that cannot generate large enough signals for commercial magnetometers. To achieve an optimized coupling, the sample is usually placed directly on a SQUID chip and as close to the SQUID washer as possible. Therefore, a large working temperature range of the nano-SQUID is desirable to measure a wider range of samples. Here, we achieved the measurement of the Meissner effect in a 25 mu m-sized Nb and a 40 mu m x 120 mu m-sized FeSe crystals using a niobium nitride (NbN) nano-SQUID. This nano-SQUID has a usable magnetic flux modulation for temperatures up to 9.5 K. The flux noise is around 50-60 mu Phi(0) Hz(-1/2) for the entire measurement system. The diamagnetic branches induced by the Meissner effect below the lower critical field were observed for both Nb and FeSe crystals with the NbN nano-SQUID device. In addition, at various temperatures, strong magnetic hysteresis arising from vortices pinning was also observed and analyzed for both Nb and FeSe crystals." @default.
- W2624715935 created "2017-06-23" @default.
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- W2624715935 date "2017-06-14" @default.
- W2624715935 modified "2023-10-17" @default.
- W2624715935 title "Measurement of Meissner effect in micro-sized Nb and FeSe crystals using an NbN nano-SQUID" @default.
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- W2624715935 doi "https://doi.org/10.1088/1361-6668/aa710d" @default.
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