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Heavy electronic states originating from the f atomic orbitals underlie a rich variety of quantum phases of matter. We use atomic scale imaging and spectroscopy with the scanning tunneling microscope (STM) to examine the novel electronic…

Strongly Correlated Electrons · Physics 2015-05-18 Pegor Aynajian , Eduardo H. da Silva Neto , Colin V. Parker , Yingkai Huang , Abhay Pasupathy , John Mydosh , Ali Yazdani

Novel electronic states resulting from entangled spin and orbital degrees of freedom are hallmarks of strongly correlated f-electron systems. A spectacular example is the so-called 'hidden-order' phase transition in the heavy-electron metal…

Strongly Correlated Electrons · Physics 2012-07-19 H. Ikeda , M. -T. Suzuki , R. Arita , T. Takimoto , T. Shibauchi , Y. Matsuda

In matter, any spontaneous symmetry breaking induces a phase transition characterized by an order parameter, such as the magnetization vector in ferromagnets, or a macroscopic many-electron wave-function in superconductors. Phase…

Within a Kondo lattice, the strong hybridization between electrons localized in real space (r-space) and those delocalized in momentum-space (k-space) generates exotic electronic states called 'heavy fermions'. In URu2Si2 these effects…

Solids with strong electron correlations generally develop exotic phases of electron matter at low temperatures. Among such systems, the heavy-fermion semi-metal URu2Si2 presents an enigmatic transition at To = 17.5 K to a `hidden order'…

Strongly Correlated Electrons · Physics 2009-07-25 A. F. Santander-Syro , M. Klein , F. L. Boariu , A. Nuber , P. Lejay , F. Reinert

When matter is cooled from high temperatures, collective instabilities develop amongst its constituent particles that lead to new kinds of order. An anomaly in the specific heat is a classic signature of this phenomenon. Usually the…

Strongly Correlated Electrons · Physics 2009-11-07 P. Chandra , P. Coleman , J. A. Mydosh , V. Tripathi

The heavy fermion intermetallic compound URu2Si2 exhibits a "hidden-order" phase below the temperature of 17.5 K, which supports both anomalous metallic behavior and unconventional superconductivity. While these individual phenomena have…

Quantum materials are epitomized by the influence of collective modes upon their macroscopic properties. Relatively few examples exist, however, whereby coherence of the ground-state wavefunction directly contributes to the conductivity.…

URu$_2$Si$_2$ is surely one of the most mysterious of the heavy-fermion compounds. Despite more than twenty years of experimental and theoretical works, the order parameter of the transition at $T_0 = 17.5$ K is still unknown. The state…

Strongly Correlated Electrons · Physics 2012-03-06 G. W. Scheerer , W. Knafo , D. Aoki , G. Ballon , A. Mari , D. Vignolles , J. Flouquet

One of the primary goals of modern condensed matter physics is to elucidate the nature of the ground state in various electronic systems. Many correlated electron materials, such as high temperature superconductors, geometrically frustrated…

URu2Si2 presents superconductivity at temperatures below 1.5 K, and a hidden order (HO) at about 17.5 K, both electronic phenomena are in uenced by Fano and Kondo resonances. At 17.5 K the HO was related in the past to a Peierls distortion…

Superconductivity · Physics 2015-06-23 R. Escudero , R. E. López-Romero , F. Morales

The heavy electron Kondo liquid is an emergent state of condensed matter that displays universal behavior independent of material details. Properties of the heavy electron liquid are best probed by NMR Knight shift measurements, which…

In heavy-fermion compounds, the dual character of $f$ electrons underlies their rich and often exotic properties like fragile heavy quasipartilces, variety of magnetic orders and unconventional superconductivity. 5$f$-electron actinide…

Strongly Correlated Electrons · Physics 2019-09-13 Q. Y. Chen , X. B. Luo , D. H. Xie , M. L. Li , X. Y. Ji , R. Zhou , Y. B. Huang , W. Zhang , W. Feng , Y. Zhang , X. G. Zhu , Q. Q. Hao , Q. Liu , L. Huang , P. Zhang , X. C. Lai , Q. Si , S. Y. Tan

Novel electronic phenomena frequently form in heavy fermions as a consequence of the mutual nature of localization and itineracy of f electrons. On the magnetically ordered side of the heavy fermion phase diagram, f moments are expected to…

Substitution of Re for Ru in the heavy fermion compound URu2Si2 suppresses the hidden order transition and gives rise to ferromagnetism at higher concentrations. The hidden order transition of URu(2-x)Re(x)Si2, tracked via specific heat and…

Strongly Correlated Electrons · Physics 2010-04-07 Nicholas P. Butch , M. Brian Maple

The heavy-fermion compound URu2Si2 exhibits a hidden-order phase below the temperature, ~ 17.5 K. In spite of intense research for past three decades, no consensus on the order parameter exists and the nature has posed a long-standing…

Strongly Correlated Electrons · Physics 2018-07-06 Yi Liu , Wen Zhang , Xiaoying Wang , Donghua Xie , Xinchun Lai

We report the use of impurities to probe the hidden order parameter of the strongly correlated metal URu_2Si_2 below the transition temperature T_0 ~ 17.5 K. The nature of this order parameter has eluded researchers for more than two…

Strongly Correlated Electrons · Physics 2013-05-29 S. -H. Baek , M. J. Graf , A. V. Balatsky , E. D. Bauer , J. C. Cooley , J. L. Smith , N. J. Curro

URu2Si2 is one of the most enigmatic strongly-correlated-electron systems and offers a fertile testing ground for new concepts in condensed matter science. In spite of >30 years of intense research, no consensus on the order parameter of…

Strongly Correlated Electrons · Physics 2016-11-07 W. Knafo , F. Duc , F. Bourdarot , K. Kuwahara , H. Nojiri , D. Aoki , J. Billette , P. Frings , X. Tonon , E. Lelièvre-Berna , J. Flouquet , L. -P. Regnault

This Topical Review describes the multitude of unconventional behaviors in the hidden order, heavy fermion, antiferromagnetic and superconducting phases of the intermetallic compound URu$_2$Si$_2$ when tuned with pressure, magnetic field,…

Strongly Correlated Electrons · Physics 2019-12-20 J. A. Mydosh , P. M. Oppeneer , P. S. Riseborough

We report a comprehensive electronic structure investigation of the paramagnetic (PM), the large moment antiferromagnetic (LMAF), and the hidden order (HO) phases of URu$_2$Si$_2$. We have performed relativistic full-potential calculations…

Strongly Correlated Electrons · Physics 2015-05-19 P. M. Oppeneer , J. Rusz , S. Elgazzar , M. -T. Suzuki , T. Durakiewicz , J. A. Mydosh
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