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Thermodynamic study on non-centrosymmetric superconductor UIr by ac calorimetry under high pressure

結晶に反転対称性のない超伝導物質UIの熱物性測定による研究

立岩 尚之   ; 芳賀 芳範   ; 松田 達磨; 山本 悦嗣  ; 池田 修悟; 大貫 惇睦*

Tateiwa, Naoyuki; Haga, Yoshinori; Matsuda, Tatsuma; Yamamoto, Etsuji; Ikeda, Shugo; Onuki, Yoshichika*

結晶に反転対称性のない重い電子系超伝導物質CePt$$_3$$SiとUIrについて行った高圧下比熱測定による研究結果について報告する。CePt$$_3$$Siでは反強磁性秩序状態の臨界圧力$$P_{rm AF}$$が0.6GPa程度であることが明らかとなった。一方超伝導相は常圧から1.5GPaまでの幅広い圧力範囲に存在し、新奇な超伝導を反映した大変特徴のある圧力相図が明らかにされた。UIrは常圧でキュリー温度$$T_{rm C1}$$=46Kの強磁性物質である。高圧下比熱測定により$$T_{rm C1}$$の圧力依存性を調べた。その結果は過去の電気抵抗・交流磁化率測定によるものと一致した。

We investigated non-centrosymmetric compounds CePt$$_3$$Si and UIr by the ac heat capacity measurement under pressures. The pressure phase diagrams are determined. In CePt$$_3$$Si, the N$'e$el temperature $$T_{rm N}$$ = 2.2 K decreases with increasing pressure and becomes zero at the critical pressure $$P_{rm AF}$$ $$simeq$$ 0.6 GPa. On the other hand, the superconducting phase exists in a wider pressure region from ambient pressure to about 1.5 GPa. The phase diagram of CePt$$_3$$Si is thus very unique. In the ferromagnetic compound UIr where successive ferromagnetic transitions appear under pressure, the heat capacity shows an anomaly at the Curie temperature $$T_{rm C1}$$ and this anomaly shifts to lower temperatures with increasing pressure. The present pressure dependence of $$T_{rm C1}$$ was consistent with the previous works by the resistivity and magnetization measurements.

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分野:Physics, Multidisciplinary

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