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Degenerate Fermi and non-Fermi liquids near a quantum critical phase transition

量子相転移近傍のフェルミ、非フェルミ液体縮退

神戸 振作; 酒井 宏典; 徳永 陽; Lapertot, G.*; 松田 達磨*; Knebel, G.*; Flouquet, J.*; Walstedt, R. E.*

Kambe, Shinsaku; Sakai, Hironori; Tokunaga, Yo; Lapertot, G.*; Matsuda, Tatsuma*; Knebel, G.*; Flouquet, J.*; Walstedt, R. E.*

共存した静的なフェルミ液体および非フェルミ液体状態がYbRh$$_{2}$$Si$$_{2}$$の中の量子相転移の重要な特徴であることを解明した。単結晶サンプルの核磁気共鳴(NMR)スピン格子緩和時間測定し、フェルミの液体および非フェルミ液体状態の共存比が磁場により変化することを突き止めた。またこの比がもつスケール則も見いだした。

In new observations reported here, we find that coexisting, static Fermi liquid and non-Fermi liquid states are a key feature of the QCPT in YbRh$$_{2}$$Si$$_{2}$$. By means of nuclear magnetic resonance (NMR) spin-lattice relaxation time measurements on a single crystal sample, it is revealed that the FL and NFL states are invariant,while their relative proportion in a crossover is field dependent near the QCPT. Such a pair of states has remained hidden in Ce compounds, owing presumably to short lifetimes for the two states. A new scaling law for the occupation ratio of the two states is derived, and could be widely applicable to Kondo-lattice systems

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パーセンタイル:23

分野:Physics, Multidisciplinary

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