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Fermion condensation quantum phase transition versus conventional quantum phase transitions

机译:Fermion凝聚量子相变与常规量子相变

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The main features of fermion condensation quantum phase transition (FCQPT), which are distinctive in several aspects from that of conventional quantum phase transition (CQPT), are considered. We show that in contrast to CQPT, whose physics in quantum critical region is dominated by thermal and quantum fluctuations and characterized by the absence of quasiparticles, the physics of a Fermi system near FCQPT or undergone FCQPT is controlled by the system of quasiparticles resembling the Landau quasiparticles. Contrary to the Landau quasiparticles, the effective mass of these quasiparticles strongly depends on the temperature, magnetic fields, density, etc. This system of quasiparticles having general properties determines the universal behavior of the Fermi system in question. As a result, the universal behavior persists up to relatively high temperatures comparatively to the case when such a behavior is determined by CQPT. We analyze striking recent measurements of specific heat, charge and heat transport used to study the nature of magnetic field-induced QCP in heavy-fermion metal CeCoIn5 and show that the observed facts are in good agreement with our scenario based on FCQPT and certainly seem to rule out the critical fluctuations related with CQPT. Our general consideration suggests that FCQPT and the emergence of novel quasiparticles near and behind FCQPT and resembling the Landau quasiparticles are distinctive features intrinsic to strongly correlated substances. (C) 2004 Elsevier B.V. All rights reserved.
机译:考虑了费米子缩合量子相变(FCQPT)的主要特征,这些特征在几个方面与常规量子相变(CQPT)有所不同。我们发现,与CQPT相比,CQPT在量子临界区的物理受热和量子涨落支配,并且以不存在准粒子为特征,而在FCQPT附近或经历过FCQPT的费米系统的物理则由类似于Landau的准粒子系统控制准粒子。与Landau准粒子相反,这些准粒子的有效质量在很大程度上取决于温度,磁场,密度等。这种具有一般性质的准粒子系统决定了所讨论的费米系统的普遍行为。结果,与由CQPT确定这种行为的情况相比,该普遍行为在较高的温度下持续存在。我们分析了近期用于测量重铁金属CeCoIn5中磁场诱导的QCP的性质的比热,电荷和热传递的惊人测量结果,并表明观察到的事实与我们基于FCQPT的情况非常吻合,并且似乎可以排除与CQPT相关的严重波动。我们的总体考虑表明,FCQPT以及FCQPT前后的新型准粒子的出现(类似于Landau准粒子)是强相关物质固有的独特特征。 (C)2004 Elsevier B.V.保留所有权利。

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