Introduction to 'quantum integrability in out of equilibrium systems

Journal of Statistical Mechanics: Theory and Experiment IOP Publishing 2016:6 (2016) ARTN 064001

Authors:

P Calabrese, Fabian Essler, G Mussardo

Quantum Hall Edges with Hard Confinement: Exact Solution beyond Luttinger Liquid

(2016)

Authors:

Richard Fern, Steven H Simon

Majorana spectroscopy of 3D Kitaev spin-liquids

Physical Review B - Condensed Matter and Materials Physics American Physical Society (2016)

Authors:

John T Chalker, Adam Smith, Johannes Knolle, Dmitry L Kovrizhin, Roderich Moessner

Abstract:

We analyse the dynamical response of a range of 3D Kitaev quantum spin-liquids, using lattice models chosen to explore the different possible low-energy spectra for gapless Majorana fermions, with either Fermi surfaces, nodal lines or Weyl points. We find that the behaviour of the dynamical structure factor is distinct in all three cases, reflecting the quasiparticle density of states in two fundamentally different ways. First, the low-energy response is either straightforwardly related to the power with which the low-energy density of states vanishes; or for a non-vanishing density of states, to the phase shifts encountered in the corresponding X-ray edge problem, whose phenomenology we extend to the case of Majorana fermions. Second, at higher energies, there is a rich fine-structure, determined by microscopic features of the Majorana spectrum. Our theoretical results test the usefulness of inelastic neutron scattering as a probe of these quantum spin liquids: we find that although spin flips fractionalise, the main features of the dynamical spin response nevertheless admit straightforward interpretations in terms of Majorana and flux loop excitations.

Active micromachines: Microfluidics powered by mesoscale turbulence

(2016)

Authors:

Sumesh P Thampi, Amin Doostmohammadi, Tyler N Shendruk, Ramin Golestanian, Julia M Yeomans

Ising tricriticality in the extended Hubbard model with bond dimerization

Physical Review B - Condensed Matter and Materials Physics American Physical Society 93:23 (2016)

Authors:

Satoshi Ejima, Fabian Essler, Florian Lange, Holger Fehske

Abstract:

We explore the quantum phase transition between Peierls and charge-density-wave insulating states in the one-dimensional, half-filled, extended Hubbard model with explicit bond dimerization. We show that the critical line of the continuous Ising transition terminates at a tricritical point, belonging to the universality class of the tricritical Ising model with central charge c=7/10. Above this point, the quantum phase transition becomes first order. Employing a numerical matrix-product-state based (infinite) density-matrix renormalization group method we determine the ground-state phase diagram, the spin and two-particle charge excitations gaps, and the entanglement properties of the model with high precision. Performing a bosonization analysis we can derive a field description of the transition region in terms of a triple sine-Gordon model. This allows us to derive field theory predictions for the power-law (exponential) decay of the density-density (spin-spin) and bond-order-wave correlation functions, which are found to be in excellent agreement with our numerical results.