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相关论文: Quantum criticality in Ce$_{1-x}$Sm$_x$CoIn$_5$

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Nematicity and magnetism are prevalent orders in high transition temperature (Tc) superconductors, coexisting in the parent compound of most material families. Quantum fluctuations of nematicity or spin orders are both plausible candidates…

We measured specific heat and resistivity of heavy fermion CeCoIn5 between the superconducting critical field $H_{c2} = 5 T$ and 9 T, with field in the [001] direction, and at temperatures down to 50mK. At 5T the data show Non Fermi Liquid…

强关联电子 · 物理学 2016-08-31 A. Bianchi , R. Movshovich , I. Vekhter , P. G. Pagliuso , J. L. Sarrao

A magnetic order can be completely suppressed at zero temperature($T$), by doping carriers or applying pressure, at a quantum critical point(QCP), around which physical properties change drastically. However, the situation is unclear for an…

超导电性 · 物理学 2018-10-23 C. G. Wang , Z. Li , J. Yang , L. Y. Xing , G. Y. Dai , X. C. Wang , C. Q. Jin , R. Zhou , Guo-qing Zheng

Whether a quantum critical point (QCP) lies beneath the superconducting dome has been a long-standing issue that remains unresolved in many classes of unconventional superconductors, notably cuprates, heavy fermion compounds and most…

超导电性 · 物理学 2014-03-12 T. Shibauchi , A. Carrington , Y. Matsuda

The effects of structural quantum criticality on the strong-coupling superconductivity of (Sr$_{1-x}$Ca$_x$)$_3$Rh$_4$Sn$_{13}$ have been investigated via electrical resistivity and specific heat measurements. We demonstrate that the…

强关联电子 · 物理学 2021-08-03 Yasuhiro Terasaki , Ratsuki Yamaguchi , Yui Ishii , Yurina Tada , Arisa Yamamoto , Shigeo Mori

A quantum critical point (QCP) is a singularity in the phase diagram arising due to quantum mechanical fluctuations. The exotic properties of some of the most enigmatic physical systems, including unconventional metals and superconductors,…

强关联电子 · 物理学 2014-05-13 P. Merchant , B. Normand , K. W. Krämer , M. Boehm , D. F. McMorrow , Ch. Rüegg

The Ising nematic quantum critical point (QCP) associated with the zero temperature transition from a symmetric to a nematic {\it metal} is an exemplar of metallic quantum criticality. We have carried out a minus sign-free quantum Monte…

超导电性 · 物理学 2016-08-31 Yoni Schattner , Samuel Lederer , Steven A. Kivelson , Erez Berg

A focus of recent experimental and theoretical studies on heavy fermion systems close to antiferromagnetic (AFM) quantum critical points (QCP) is directed toward revealing the nature of the fixed point, i.e., whether it is an itinerant…

Iridates provide a fertile ground to investigate correlated electrons in the presence of strong spin-orbit coupling. Bringing these systems to the proximity of a metal-insulator quantum phase transition is a challenge that must be met to…

CePd_1-xRh_x alloys exhibit a continuous evolution from ferromagnetism (T_C= 6.5 K) at x = 0 to a mixed valence (MV) state at x = 1. We have performed a detailed investigation on the suppression of the ferromagnetic (F) phase in this alloy…

强关联电子 · 物理学 2013-05-29 J. G. Sereni , T. Westerkamp , R. Kuechler , N. Caroca-Canales , P. Gegenwart , C. Geibel

A quantum critical point (QCP) arises at a continuous transition between competing phases at zero temperature. Collective excitations at magnetic QCPs give rise to metallic properties that strongly deviate from the expectations of Landau's…

The universality of the strange metal phase in many quantum materials is often attributed to the presence of a quantum critical point (QCP), a zero-temperature phase transition ruled by quantum fluctuations. In cuprates, where…

Quantum phase transitions are an established setting for emergent phenomena driven by strong electronic correlations, including strange metals and unconventional superconductivity. These have been explored extensively in Kondo lattice…

A systematic analysis of thermodynamic properties performed on Ce-base exemplary compounds allows to identify different types of behaviors as the system approaches the quantum critical region. They are recognized in the respective magnetic…

强关联电子 · 物理学 2011-08-02 Julian G. Sereni

An enduring question in correlated systems concerns whether superconductivity is favoured at a quantum critical point (QCP) characterised by a divergent quasiparticle effective mass. Despite such a scenario being widely postulated in high…

We report low-temperature calorimetric, magnetic and resistivity measurements on the antiferromagnetic (AF) heavy-fermion metal YbRh$_2$Si$_2$ (${T_N =}$ 70 mK) as a function of magnetic field $B$. While for fields exceeding the critical…

强关联电子 · 物理学 2009-11-07 P. Gegenwart , J. Custers , C. Geibel , K. Neumaier , T. Tayama , K. Tenya , O. Trovarelli , F. Steglich

In fermionic systems with different types of quasi-particles, attractive interactions can give rise to exotic superconducting states, as pair density wave (PDW) superconductivity and breached pairing. In the last years the search for these…

强关联电子 · 物理学 2015-05-20 Aline Ramires , Mucio A. Continentino

The search for the ferromagnetic quantum critical point (FM QCP) has always been a captivating research topic in the scientific community. In pursuit of this goal, we introduced nonmagnetic transition metals to alloy with elemental nickel,…

强关联电子 · 物理学 2024-10-01 R. -Z. Lin , C. -H. Hsu , E. -P. Liu , W. -T. Chen , C. -L. Huang

The resistivity of CeCoIn_5 was measured down to 20 mK in magnetic fields of up to 16 T. With increasing field, we observe a suppression of the non-Fermi liquid behavior, rho~T, and the development of a Fermi liquid state, with its…

In strongly correlated systems, interactions give rise to critical fluctuations surrounding the quantum critical point (QCP) of a quantum phase transition. Quasicrystals allow the study of quantum critical phenomena in aperiodic systems…

强关联电子 · 物理学 2025-04-16 A. Khansili , Y. -C. Huang , U. Häussermann , C. Pay Gomez , A. Rydh