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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

We study temperature and finite-size effects on the spontaneous symmetry breaking/restoration for a scalar field model under the influence of an external magnetic field, at finite chemical potential. We use the 2PI formalism and consider…

High Energy Physics - Theory · Physics 2013-11-21 L. M. Abreu , C. A. Linhares , A. P. C. Malbouisson , J. M. C. Malbouisson

We present a mean field theory of the Pomeranchuk instability in two dimensions, starting from a generic central interaction potential described in terms of a few microscopic parameters. For a significant range of parameters, the…

Strongly Correlated Electrons · Physics 2008-07-30 J. Quintanilla , M. Haque , A. J. Schofield

We use the microscopic Hartree-Fock approximation to investigate various quantum phase transitions associated with possible spontaneous symmetry breaking induced by a tilted magnetic field in the integral quantum Hall regime of wide…

Strongly Correlated Electrons · Physics 2009-11-10 D. -W. Wang , E. Demler , S. Das Sarma

Materials hosting flat bands at the vicinity of the Fermi level promote exotic symmetry broken states. Common to many of these are van Hove singularities at saddle points of the dispersion or even higher-order van Hove singularities where…

We discuss the emergence of symmetry-breaking {\it via} the Pomeranchuk instability from interactions that respect the underlying point-group symmetry. We use a variational mean-field theory to consider a 2D continuum and a square lattice.…

Strongly Correlated Electrons · Physics 2008-04-25 J. Quintanilla , C. Hooley , B. J. Powell , A. J. Schofield , M. Haque

To assess the strength of nematic fluctuations with a finite wave vector in a two-dimensional metal, we compute the static d-wave polarization function for tight-binding electrons on a square lattice. At Van Hove filling and zero…

Strongly Correlated Electrons · Physics 2012-05-11 Tobias Holder , Walter Metzner

We present a variational Monte Carlo (VMC) study of spontaneous Fermi surface symmetry breaking in the t-J model. We find that the variational energy of a Gutzwiller projected Fermi sea is lowered by allowing for a finite asymmetry between…

Strongly Correlated Electrons · Physics 2009-11-11 Bernhard Edegger , V. N. Muthukumar , Claudius Gros

We propose a mechanism that helps stabilize a superconducting state with broken time-reversal symmetry, which was predicted to realize in a d-wave superconducting film [A. B. Vorontsov, Phys. Rev. Lett. 102, 177001 (2009)]. In this…

Superconductivity · Physics 2015-04-01 Nobumi Miyawaki , Seiji Higashitani

We investigate instabilities in the charge channel in the vicinity of (meta-)magnetic transitions of itinerant electron systems. Based on a weak coupling analysis we argue that in a one-band $t$-$t'$ Hubbard model near the van Hove filling…

Strongly Correlated Electrons · Physics 2007-05-23 Carsten Honerkamp

We show that the spontaneous symmetry breaking can be defined also for finite systems based on the properly defined jump probability between the ground states in the 2d and 3d Ising models on a square and a cubic lattice respectively. Our…

Statistical Mechanics · Physics 2021-06-25 Fotis K. Diakonos , Yiannis F. Contoyiannis , Stelios M. Potirakis

We investigate the competing Fermi surface instabilities in the Kagome tight-binding model. Specifically, we consider onsite and short-range Hubbard interactions in the vicinity of van Hove filling of the dispersive Kagome bands where the…

Strongly Correlated Electrons · Physics 2013-03-27 Maximilian L. Kiesel , Christian Platt , Ronny Thomale

We propose that anisotropic $p$-, $d$-, or $f$-wave pairing symmetries can be distinguished from a tunneling spectroscopy in the presence of magnetic fields, which is exemplified here for a model organic superconductor ${(TMTSF)}_{2}X$. The…

Superconductivity · Physics 2009-11-07 Y. Tanuma , K. Kuroki , Y. Tanaka , R. Arita , S. Kashiwaya , H. Aoki

We argue that at finite carrier density and large displacement fields, bilayer graphene is prone to $\ell =0$ and $\ell = 1$ Pomeranchuk Fermi surface instabilities. The broken symmetries are driven by non-local exchange interactions which…

Mesoscale and Nanoscale Physics · Physics 2015-07-08 Jeil Jung , Marco Polini , Allan H. MacDonald

We analyze a model of itinerant electrons interacting through a quadrupole density-density repulsion in three dimensions. At the mean field level, the interaction drives a continuous Pomeranchuk instability towards $d$-wave, spin-triplet…

Strongly Correlated Electrons · Physics 2016-06-08 G. Hannappel , C. J. Pedder , F. Krüger , A. G. Green

We study d-wave Fermi surface deformations (dFSD), the so-called Pomeranchuk instability, on bilayer and infinite-layer square lattices. Since the order parameter of the dFSD has Ising symmetry, there are two stacking patterns along the c…

Strongly Correlated Electrons · Physics 2009-11-13 Hiroyuki Yamase

The quantum Hall states of graphene have a filled Dirac sea of Landau levels. The short ranged SU(4) symmetry breaking interactions can induce a staggered polarization of the sea of Dirac-Landau levels. We study this effect in the extended…

Mesoscale and Nanoscale Physics · Physics 2007-07-09 Vinu Lukose , R. Shankar

Magnetic-field-induced changes of the Fermi surface play a central role in theories of the exotic quantum criticality of YbRh2Si2. We have carried out de Haas-van Alphen measurements in the magnetic-field range 8 T <= H <= 16 T, and…

Strongly Correlated Electrons · Physics 2009-02-03 P. M. C. Rourke , A. McCollam , G. Lapertot , G. Knebel , J. Flouquet , S. R. Julian

A novel holographic model of chiral symmetry breaking has been proposed by Kuperstein and Sonnenschein by embedding non-supersymmetric probe D7 and anti-D7 branes in the Klebanov-Witten background. We study the dynamics of the probe…

High Energy Physics - Theory · Physics 2015-06-04 M. Sohaib Alam , Vadim S. Kaplunovsky , Arnab Kundu

The influence of an external magnetic field on a quasi one-dimensional system with a charge density wave (CDW) instability is treated within the random phase approximation which includes both CDW and spin density wave correlations. We show…

Condensed Matter · Physics 2009-10-28 D. Zanchi , A. Bjeliš , G. Montambaux