Effect of Pressure on Magneto-Transport Properties in the Superconducting and Normal Phases of the Metallic Double Chain Compound Pr sub( 2)Ba sub( 4)Cu sub( 7)O sub( 15- delta )

To examine the electronic phase diagram of superconducting CuO double chains, we report the effect of external pressure on the magneto-transport properties in superconducting and non-superconducting polycrystalline samples of ... at low temperatures (1.8-40 K) under various magnetic fields (up to 14...

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Veröffentlicht in:Journal of the Physical Society of Japan 2016-12, Vol.85 (12), p.1-1
Hauptverfasser: Kuwabara, Masayoshi, Matsukawa, Michiaki, Sugawara, Keisuke, Taniguchi, Haruka, Matsushita, Akiyuki, Hagiwara, Makoto, Sano, Kazuhiro, Ono, Yoshiaki, Sasaki, Takahiko
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Sprache:eng
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Zusammenfassung:To examine the electronic phase diagram of superconducting CuO double chains, we report the effect of external pressure on the magneto-transport properties in superconducting and non-superconducting polycrystalline samples of ... at low temperatures (1.8-40 K) under various magnetic fields (up to 14 T). In the as-sintered non-superconducting sample, the magneto-resistance (MR) follows a power law of H3/2 at low temperatures, which is in no agreement with the H2 dependence of MR in the ... system. The negative pressure dependence of the superconducting phase is qualitatively consistent with a theoretical prediction on the basis of the Tomonaga-Luttinger liquid theory. The 48-h-reduced superconducting sample at ambient pressure exhibits no clear increase in MR for T > Tc,on = 26.5 K. In contrast, with the application of pressure to the superconducting sample, the MR effects reappear and are also well fitted by H3/2. The model of slightly warped Fermi surfaces explains not only the MR effect of the non-superconducting sample, but is also related to the reasons for the pressure-induced MR phenomena of the superconducting sample. (ProQuest: ... denotes formulae/symbols omitted.)
ISSN:0031-9015
1347-4073