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Hyperhoneycomb iridate $\beta$-Li$_2$IrO$_3$ is a three-dimensional analogue of two-dimensional honeycomb iridates, such as $\alpha$-Li$_2$IrO$_3$, which recently appeared as another playground for the physics of Kitaev-type spin liquid.…

Strongly Correlated Electrons · Physics 2019-03-27 T. Takayama , A. Krajewska , A. S. Gibbs , A. N. Yaresko , H. Ishii , H. Yamaoka , K. Ishii , N. Hiraoka , N. P. Funnell , C. L. Bull , H. Takagi

By means of synchrotron X-ray diffraction, we studied the effect of high pressure, P, up to 13 GPa on the room temperature crystal structure of superconducting CaC6. In this P range, no change of the pristine space group symmetry,…

Symmetry is a basic paradigm for analysis of problems in solid state physics, and to controllably break point-group symmetries is a powerful probe of novel forms of order. In this work, we apply two methods, controlled lattice strain and…

Strongly Correlated Electrons · Physics 2016-12-15 Daniel Brodsky , Mark Barber , Jan Bruin , Rodolfo Borzi , Santiago Grigera , Robin Perry , Andrew Mackenzie , Clifford Hicks

Overshadowing the superconducting dome in hole-doped cuprates, the pseudogap state is still one of the mysteries that no consensus can be achieved. It has been suggested that the rotational symmetry is broken in this state and may result in…

We present measurements of the resistivity $\rho_{x,x}$ of URu2Si2 high-quality single crystals in pulsed high magnetic fields up to 81~T at a temperature of 1.4~K and up to 60~T at temperatures down to 100~mK. For a field \textbf{H}…

An antiferro ordering of an electric hexadecapole moment is discussed as a promising candidate for the long standing mystery of the hidden order phase in URu$_{2}$Si$_{2}$. Based on localized $f$-electron picture, we discuss the rationale…

Strongly Correlated Electrons · Physics 2015-05-27 Hiroaki Kusunose , Hisatomo Harima

We have conducted a detailed high-pressure (HP) investigation on $Eu-$doped $BaTiO_3$ using angle-resolved x-ray diffraction, Raman spectroscopy, dielectric permittivity and dc resistance measurements. The x-ray diffraction data analysis…

Materials Science · Physics 2023-04-04 Mrinmay Sahu , Bishnupada Ghosh , Bobby Joseph , Goutam Dev Mukherjee

While the tetragonal antiferro-electrically distorted (AFD) phase with space group $I4/mcm$ is well known for SrTiO$_3$ to occur below 105 K, there are also some hints in literature of an orthorhombic phase, either at lower temperature at…

Materials Science · Physics 2018-09-27 Churna Bhandari , Walter R. L. Lambrecht

Since the discovery of phase transitions driven by topological defects, the classification of phases of matter has been significantly extended beyond Ginzburg and Landau's paradigm of spontaneous symmetry breaking (SSB). In particular,…

Strongly Correlated Electrons · Physics 2025-10-17 Reja H. Wilke , Henning Schlömer , Simon M. Linsel , Annabelle Bohrdt , Fabian Grusdt

Landau's spontaneous symmetry breaking theory is a fundamental theory that describes the collective behaviors in many-body systems. It was well known that for usual spontaneous symmetry breaking in Hermitian systems, the order-disorder…

Strongly Correlated Electrons · Physics 2020-06-22 Meng-Lei Yang , Heng Wang , Cui-Xian Guo , Xiao-Ran Wang , Gaoyong Sun , Su-Peng Kou

The orbital, which represents the shape of the electron cloud, very often strongly influences the manifestation of various exotic phenomena, e.g., magnetism, metal-insulator transition, colossal magnetoresistance, unconventional…

Under the hydrostatic pressure $P=1.48$ GPa, polarized neutron elastic scattering experiments have been carried out on the coupled spin dimer system TlCuCl$_3$ with the gapped ground state at ambient pressure. Pressure-induced magnetic…

Strongly Correlated Electrons · Physics 2009-11-10 A. Oosawa , K. Kakurai , T. Osakabe , M. Nakamura , M. Takeda , H. Tanaka

With decreasing temperature Sr$_2$VO$_4$ undergoes two structural phase transitions, tetragonal-to-orthorhombic-to-tetragonal, without long-range magnetic order. Recent experiments suggest, that only at very low temperature Sr$_{2}$VO$_{4}$…

Materials Science · Physics 2017-11-15 Bongjae Kim , Sergii Khmelevskyi , Peter Mohn , Cesare Franchini

Spontaneous symmetry breaking underlies much of our classification of phases of matter and their associated transitions. The nature of the underlying symmetry being broken determines many of the qualitative properties of the phase; this is…

The heavy fermion compound URu$_2$Si$_2$ continues to attract great interest due to the unidentified hidden order it develops below 17.5K. The unique Ising character of the spin fluctuations and low temperature quasiparticles is well…

Strongly Correlated Electrons · Physics 2016-10-07 Jennifer Trinh , Ekkes Bruck , Theo Siegrist , Rebecca Flint , Premala Chandra , Piers Coleman , Arthur P. Ramirez

A detailed elastic neutron scattering study of the structural and magnetic phase transitions in single-crystal SrFe$_2$As$_2$ reveals that the orthorhombic (O)-tetragonal (T) and the antiferromagnetic transitions coincide at $T_\texttt{O}$…

A detailed elastic neutron scattering study of the structural and magnetic phase transitions in single-crystal SrFe$_2$As$_2$ reveals that the orthorhombic (O)-tetragonal (T) and the antiferromagnetic transitions coincide at $T_\texttt{O}$…

We consider the effects of impurities on the enigmatic hidden order (HO) state of the heavy-fermion material URu2Si2. In particular, we focus on local effects of Rh impurities as a tool to probe the suppression of the HO state. To study…

Strongly Correlated Electrons · Physics 2013-01-17 Maria E. Pezzoli , Matthias J. Graf , Kristjan Haule , Gabriel Kotliar , Alexander V. Balatsky

The ground state of URu2Si2 changes from so-called hidden order (HO) to large-moment antiferromagnetism (LMAF) upon applying hydrostatic pressure in excess of 14 kbar. We report the dc-magnetization M(B,T,p) of URu2Si2 for magnetic fields B…

Strongly Correlated Electrons · Physics 2007-05-23 C. Pfleiderer , J. A. Mydosh , M. Vojta

Novel states of matter arise in quantum materials due to strong interactions among electrons. A nematic phase breaks the point group symmetry of the crystal lattice and is known to emerge in correlated materials. Here we report the…

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