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The research field of magnetic frustration is dominated by triangle-based lattices but exotic phenomena can also be observed in pentagonal networks. A peculiar noncollinear magnetic order is indeed known to be stabilized in Bi2Fe4O9…

Strongly Correlated Electrons · Physics 2020-04-01 K. Beauvois , V. Simonet , S. Petit , J. Robert , F. Bourdarot , M. Gospodinov , A. A. Mukhin , R. Ballou , V. Skumryev , E. Ressouche

The vortex lattice is an ideal system to study the competition and interplay between interaction and disorder. New results on 2H-NbSe_2 (in samples of progressively increasing pinning) elucidate how pinning alters the phase boundary…

Superconductivity · Physics 2008-02-03 S. S. Banerjee

Specific heat and muon spin rotation and relaxation data are presented for two geometrically frustrated systems: Gd2Ti2O7 which antiferromagnetically orders and Yb2Ti2O7 which presents dynamical short range correlations at low temperature.…

Strongly Correlated Electrons · Physics 2009-11-11 P. Dalmas de Reotier , V. Glazkov , C. Marin , A. Yaouanc , P. C. M. Gubbens , S. Sakarya , P. Bonville , A. Amato , C. Baines , P. J. C. King

The crystal structures of the A2B2O7-x Niobium-based pyrochlores Y2(Nb0.86Y0.14)2O6.91, CaYNb2O7, and Y2NbTiO7 are reported, determined by powder neutron diffraction. These compounds represent the first observation of B-site displacements…

Strongly Correlated Electrons · Physics 2009-02-02 T. M. McQueen , B. Muegge , Q. Huang , K. Noble , H. W. Zandbergen , R. J. Cava

We study the finite temperature properties of the candidate quantum spin ice material Yb$_2$Ti$_2$O$_7$ within the framework of an anisotropic nearest-neighbor spin $1/2$ model on the pyrochlore lattice. Using a combination of finite…

Strongly Correlated Electrons · Physics 2018-05-21 Hitesh J. Changlani

A hidden order that emerges in the frustrated pyrochlore Tb$_{2+x}$Ti$_{2-x}$O$_{7+y}$ with $T_{\text{c}}=0.53$ K is studied using specific heat, magnetization, and neutron scattering experiments on a high-quality single crystal.…

Strongly Correlated Electrons · Physics 2016-06-22 H. Takatsu , S. Onoda , S. Kittaka , A. Kasahara , Y. Kono , T. Sakakibara , Y. Kato , B. Fåk , J. Ollivier , J. W. Lynn , T. Taniguchi , M. Wakita , H. Kadowaki

While the spin liquid state in the frustrated pyrochlore Tb$_{2+x}$Ti$_{2-x}$O$_{7+y}$ has been studied both experimentally and theoretically for more than two decades, no definite description of this unconventional state has been achieved.…

Quantum paramagnets are strongly-correlated phases of matter where competing interactions frustrate magnetic order down to zero temperature. In certain cases, quantum fluctuations induce instead topological order, supporting, in particular,…

Quantum Gases · Physics 2022-01-19 Daniel González-Cuadra

Unlike conventional magnets where the magnetic moments are partially or completely static in the ground state, in a quantum spin liquid they remain in collective motion down to the lowest temperatures. The importance of this state is that…

Bi$_3$Mn$_4$O$_{12}$(NO$_3$) (BMNO) is a honeycomb bilayers anti-ferromagnet, not showing any ordering down to very low temperatures despite having a relatively large Curie-Weiss temperature. Using ab initio density functional theory, we…

Strongly Correlated Electrons · Physics 2017-10-31 Mojtaba Alaei , Hamid Mosadeq , Ismail Abdolhossaini Sarsari , Farhad Shahbazi

Geometric frustration inhibits magnetic systems from ordering, opening a window to unconventional phases of matter. The paradigmatic frustrated lattice in three dimensions to host a spin liquid is the pyrochlore, although there remain few…

Low-temperature states of polycrystalline samples of a frustrated pyrochlore oxide Tb$_{2+x}$Ti$_{2-x}$O$_{7+y}$ have been investigated by specific heat, magnetic susceptibility, and neutron scattering experiments. We have found that this…

Rare-earth pyrochlores are known to exhibit exotic magnetic phenomena. We report a study of crystal growth and characterizations of a new rare-earth compound Er$_2$AlSbO$_7$, in which Al$^{3+}$ and Sb$^{5+}$ ions share the same positions…

Spin liquid ground states are predicted to arise within several distinct scenarios in condensed matter physics. The observation of these disordered magnetic states is particularly pervasive amongst a class of materials known as frustrated…

The fundamental principles of electrodynamics allow an electron carrying both electric monopole (charge) and magnetic dipole (spin) but prohibit its magnetic counterpart. Recently it was predicted that the magnetic "monopoles" carrying…

Strongly Correlated Electrons · Physics 2020-03-04 Feng Jin , Changle Liu , Anmin Zhang , Xiaoqun Wang , Gang Chen , Xuefeng Sun , Qingming Zhang

Motivated by recent experiments on BaCuSi2O6, we investigate magnetic excitations and quantum phase transitions of layered dimer magnets with inter-layer frustration. We consider two scenarios, (A) a lattice with one dimer per unit cell and…

Strongly Correlated Electrons · Physics 2007-12-13 Oliver Rösch , Matthias Vojta

In many materials, ordered phases and their order parameters are easily characterized by standard experimental methods. "Hidden order" refers to a phase transition in which an ordered state emerges without such an easily detectable order…

In condensed matter systems, the formation of long range order (LRO) with broken symmetry is often accompanied by new types of excitations. However, in many magnetic pyrochlore oxides, geometrical frustration suppresses conventional LRO…

Recent experiment on a honeycomb-lattice Heisenberg antiferromagnet (AF) Bi$_3$Mn$_4$O$_{12}$(NO$_3$) revealed a novel spin-liquid-like behavior down to low temperature, which was ascribed to the frustration effect due to the competition…

Strongly Correlated Electrons · Physics 2015-05-18 Soichiro Okumura , Hikaru Kawamura , Tsuyoshi Okubo , Yukitoshi Motome

The ytterbium pyrochlore magnets, Yb2B2O7 (B = Sn, Ti, Ge) are well described by S_eff = 1/2 quantum spins decorating a network of corner-sharing tetrahedra and interacting via anisotropic exchange. Structurally, only the non-magnetic…

Strongly Correlated Electrons · Physics 2016-03-30 A. M. Hallas , J. Gaudet , N. P. Butch , M. Tachibana , R. S. Freitas , G. M. Luke , C. R. Wiebe , B. D. Gaulin