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Related papers: The Case for Phase Separation in $URu_2Si_2$

200 papers

Shubnikov-de Haas measurements of high quality URu2Si2 single crystals reveal two previously unobserved Fermi surface branches in the so-called hidden order phase. Therefore about 55% of the enhanced mass is now detected. Under pressure in…

Strongly Correlated Electrons · Physics 2015-05-20 E. Hassinger , G. Knebel , T. M. Matsuda , D. Aoki , V. Taufour , J. Flouquet

Combination of neutron scattering and thermal expansion measurements under pressure shows that the so-called hidden order phase of URu2Si2 reenters in magnetic field when antiferromagnetism (AF) collapses at H_AF (T). Macroscopic pressure…

The hidden order phase in URu$_2$Si$_2$ is highly sensitive to electronic doping. A special interest in silicon-to-phosphorus substitution is due to the fact that it may allow one, in part, to isolate the effects of tuning the chemical…

Strongly Correlated Electrons · Physics 2021-06-11 M. C. Rahn , A. Gallagher , F. Orlandi , D. D. Khalyavin , C. Hoffmann , P. Manuel , R. Baumbach , M. Janoschek

We have investigated the nature of the antiferromagnetic (AF) phase induced by uniaxial stress sigma in URu2Si2, by performing elastic neutron scattering measurements up to 0.4 GPa. We have found that the AF Bragg-peak intensity shows a…

Strongly Correlated Electrons · Physics 2007-05-23 M. Yokoyama , J. Nozaki , H. Amitsuka , K. Watanabe , S. Kawarazaki , H. Yoshizawa , J. A. Mydosh

The application of pressure as well as the successive substitution of Ru with Fe in the hidden order (HO) compound URu$_2$Si$_2$ leads to the formation of the large moment antiferromagnetic phase (LMAFM). Here we have investigated the…

Recent experiments on URu2Si2 show that the low-pressure hidden order is non-magnetic but it breaks time reversal invariance. Restricting our attention to local order parameters of 5f2 shells, we find that the best candidate for hidden…

Strongly Correlated Electrons · Physics 2009-11-10 Annamaria Kiss , Patrik Fazekas

Spontaneous, collective ordering of electronic degrees of freedom leads to second-order phase transitions that are characterized by an order parameter. The notion "hidden order" (HO) has recently been used for a variety of materials where a…

Strongly Correlated Electrons · Physics 2009-10-11 S. Elgazzar , J. Rusz , M. Amft , P. M. Oppeneer , J. A. Mydosh

For more than two decades, the nonmagnetic anomaly observed around 17.5 K in URu2Si2, has been investigated intensively. However, any kind of fingerprint for the lattice anomaly has not been observed. Therefore, the order has been called…

Strongly Correlated Electrons · Physics 2015-05-18 Hisatomo Harima , Kazumasa Miyake , Jacques Flouquet

The behavior of the so-called weak moment antiferromagnetic states, observed in the heavy-fermion superconductors UPt$_3$ and URu$_2$Si$_2$, is discussed in view of recent $\mu$SR results obtained as function of control parameters like…

Strongly Correlated Electrons · Physics 2007-05-23 A. Amato , M. J. Graf , A. de Visser , H. Amitsuka , D. Andreica , A. Schenck

Simultaneous neutron-scattering and thermal expansion measurements on the heavy-fermion superconductor URu2Si2 under hydrostatic pressure of 0.67 GPa have been performed in order to detect the successive paramagnetic, hidden order, and…

Strongly Correlated Electrons · Physics 2008-05-07 A. Villaume , F. Bourdarot , E. Hassinger , S. Raymond , V. Taufour , D. Aoki , J. Flouquet

Results of detailed investigations of stability of phases in substances with the small difference in the energies of the ferroelectric and the antiferroelectric types of dipole ordering are presented. It is shown that interaction of locally…

Materials Science · Physics 2010-12-14 V. M. Ishchuk , V. L. Sobolev

Comprehensive review of investigations of substances with a small difference in the energies of the ferroelectric and antiferroelectric types of dipole ordering is presented. Detailed analysis of the stability of homogeneous phases and…

Materials Science · Physics 2018-01-11 V. M. Ishchuk , V. L. Sobolev

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

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

We report simultaneous measurements of the distribution of lattice constants and the antiferromagnetic moment in high-purity URu2Si2, using both Larmor and conventional neutron diffraction, as a function of temperature and pressure up to 18…

Strongly Correlated Electrons · Physics 2015-05-14 P. G. Niklowitz , C. Pfleiderer , T. Keller , M. Vojta , Y. -K. Huang , J. A. Mydosh

On the basis of group theory and the first-principles calculations, we investigate high-rank multipole orderings in URu2Si2, which have been proposed as a genuine primary order parameter in the hidden order phase below 17.5K. We apply…

Materials Science · Physics 2015-01-07 Michi-To Suzuki , Hiroaki Ikeda

Thermal expansion, magnetostriction and magnetization measurements under magnetic field and hydrostatic pressure were performed on a $\mathrm{UAu_{2}Si_{2}}$ single crystal. They revealed a large anisotropy of magnetoelastic properties…

The recent experimental finding of large-amplitude antiferromagnetism induced by uniaxial strain shows that the "hidden" low-field order of URu2Si2 breaks time reversal invariance. We propose a new crystal field model which supports…

Strongly Correlated Electrons · Physics 2016-08-31 Annamaria Kiss , Patrik Fazekas

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

The development of collective long-range order via phase transitions occurs by the spontaneous breaking of fundamental symmetries. Magnetism is a consequence of broken time-reversal symmetry while superfluidity results from broken gauge…

Strongly Correlated Electrons · Physics 2013-02-01 Premala Chandra , Piers Coleman , Rebecca Flint