The influence of microstructure on the transport critical current density in MgB2 wires obtained by PIT methods

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superconducting MgB2 phase, diffusion barriers, doping impurities, high pressure, critical current density, scanning electron microscopy, superconducting wires

Анотація

Four decades after the discovery of high-temperature superconductivity by Bednorz and Müller, magnesium diboride, which has the highest critical temperature among conventional phonon-mediated superconductors, re mains one of the most promising materials for practical, low-cost superconducting wires operating above liquid helium temperature. This article reviews how various factors, such as the purity and grain size of Mg and B pow ders, diffusion barriers, dopants, and high-pressure processing, influence the formation of the superconducting MgB2 phase and its microstructure, and consequently the transport critical current density (Jc) measured at 4.2 and 20 K in in situ powder-in-tube (PIT) MgB2 wires. Moreover, a method of preparing samples for scanning elec tron microscopy based on fracturing rather than polishing is presented, which enables a substantially improved characterization of the microstructure of the in situ MgB2 material in superconducting wires.

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Опубліковано

2026-09-28

Як цитувати

(1)
Michał Babij, Daniel Gajda, and Andrzej Zaleski, The influence of microstructure on the transport critical current density in MgB2 wires obtained by PIT methods , Low Temp. Phys. 52, (2026) (in press) [Fiz. Nyzk. Temp. 52, 1496–1508, (2026)].

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