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論文

Local moments in the heterogeneous electronic state of Cd-substituted CeCoIn$$_5$$; NQR relaxation rates

酒井 宏典; Ronning, F.*; 服部 高典; 徳永 陽; 神戸 振作; Zhu, J.-X.*; Wakeham, N.*; 安岡 弘志; Bauer, E. D.*; Thompson, J. D.*

Journal of Physics; Conference Series, 807(3), p.032001_1 - 032001_6, 2017/04

 被引用回数:3 パーセンタイル:68.31(Physics, Condensed Matter)

量子臨界金属CeCoIn$$_5$$のInを少量のCdで置換した時の電子状態を核四重極共鳴(NQR)を用いて調べた。およそ半分のCd置換子周りで局所的にCeの局在モーメントが発生することを、縦緩和率$$1/T_1$$のサイト依存性から明らかにした。横緩和率$$T_{rm 2G}$$の測定も行い、局在スピン周りでは、$$T_1T/T_{rm 2G}^2$$が温度$$T$$に比例し、一方、置換子から離れたところでは、$$T_1T/T_{rm 2G}^2propto T^{0.7}$$となっており、純CeCoIn$$_5$$$$T^{0.75}$$に近く、バルクの電子状態は量子臨界状態のままである。

論文

Magnetoresistance and Hall effect of antiferromagnetic uranium compound URhIn$$_5$$

芳賀 芳範; 松本 裕司*; Pospisil, J.; 立岩 尚之; 山本 悦嗣; 山村 朝雄*; Fisk, Z.*

Journal of Physics; Conference Series, 807(1), p.012015_1 - 012015_4, 2017/04

 被引用回数:1 パーセンタイル:34(Physics, Condensed Matter)

Transport characteristics of an antiferromagnetic uranium compound URhIn$$_5$$ are studied. The antiferromagnetic transition leads to a formation of a gap on the Fermi surface as demonstrated by a hump in the resistivity behavior as a function of temperature. Hall effect, magnetoresistance and de Haas-van Alphen study consistently demonstrate a small carrier concentration in the antiferromagnetic state suggesting that majority of the Fermi surface vanishes.

論文

Second-order structural transition in (Ca$$_{0.5}$$Sr$$_{0.5}$$)$$_3$$Rh$$_4$$Sn$$_{13}$$

Cheung, Y. W.*; Hu, Y. J.*; Goh, S. K.*; 金子 耕士; 筒井 智嗣; Logg, P. W.*; Grosche, F. M.*; 金川 響*; 谷奥 泰明*; 今井 正樹*; et al.

Journal of Physics; Conference Series, 807(3), p.032002_1 - 032002_4, 2017/04

BB2016-0329.pdf:0.86MB

 被引用回数:5 パーセンタイル:83.41(Physics, Condensed Matter)

(Ca$$_{0.5}$$Sr$$_{0.5}$$)$$_3$$Rh$$_4$$Sn$$_{13}$$ is a member of the substitution series (Ca$$_{x}$$Sr$$_{1-x}$$)$$_3$$Rh$$_4$$Sn$$_{13}$$ which has recently been argued to feature a structural quantum critical point at $$x_c$$ = 0.9. In the stoichiometric compound Sr$$_{3}$$Rh$$_{4}$$Sn$$_{13}$$, the structural transition at $$T^*$$ $$approx$$ 138 K has been shown to be a second-order phase transition. Moving towards xc, we examine the character of the structural transition in (Ca$$_{0.5}$$Sr$$_{0.5}$$)$$_3$$Rh$$_4$$Sn$$_{13}$$ (i.e. $$x$$ = 0.5, $$T^*$$ $$approx$$ 55 K) using electrical resistivity, heat capacity and X-ray scattering. The absence of the thermal hysteresis in specific heat around $$T^*$$, and the continuous evolution of the superlattice reflection detected by X-ray diffraction are consistent with the scenario that the structural transition associated with a modulation vector $$q$$ = (0.5, 0.5, 0) in (Ca$$_{0.5}$$Sr$$_{0.5}$$)$$_3$$Rh$$_4$$Sn$$_{13}$$ remains second-order on approaching the quantum critical point.

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