Electrical transport properties of Ti<sub>53</sub>Zr<sub>27</sub>Ni<sub>20</sub> quasicrystals under high pressure
ORAL
Abstract
Effects of pressure on electronic resistance and the critical magnetic field for Ti53Zr27Ni20 quasicrystals were investigated. Superconducting transition temperature, Tc, increased from 1.99 K to 6.47 K with increasing pressure from 0.78 GPa, and 75.63 GPa, respectively. With increasing the magnetic field, the superconductivity was gradually suppressed. The GL fit revealed that the maximum upper critical value was 9.62 T at 75.63 GPa. The synchrotron-based X-ray diffraction measurement results revealed that Ti53Zr27Ni20 quasicrystals maintained the icosahedral structure. Our combined results of structure and transport measurements suggest that increasing the pressure will increase the Tc in Ti53Zr27Ni20 quasicrystals. The results will be compared with the ones for the hydride systems.
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Presenters
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Bin Li
Hanyang Univ.
Authors
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Bin Li
Hanyang Univ.
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Jaeyong Kim
Hanyang Univ, Hanyang Univ.
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Tuson Park
Sungkyunkwan Univ
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Sanghwa Lee
Hanyang Univ.
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Soonbeom Seo
Sungkyunkwan Univ.
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Dongzhou Zhang
Advanced Photon Source