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Related papers: Various facets of magnetic charge correlation: Mic…

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Spontaneous charge ordering occurring in correlated systems may be considered as a possible route to generate effective lattice structures with unconventional couplings. For this purpose we investigate the phase diagram of doped extended…

Strongly Correlated Electrons · Physics 2016-11-15 Ryui Kaneko , Luca F. Tocchio , Roser Valentí , Claudius Gros

Magnetic charge propagation in bulk frustrated materials has yielded a paradigm-shift in science, allowing the symmetry between electricity and magnetism to be studied. Recent work is now suggesting magnetic charge dynamics upon the…

Mesoscale and Nanoscale Physics · Physics 2021-07-14 Andrew May , Michael Saccone , Arjen van den Berg , Joseph Askey , Matthew Hunt , Sam Ladak

Muon spin rotation measurements have been performed on a powder sample of a-RuCl3, a layered material which previously has been proposed to be a quantum magnet on a honeycomb lattice close to a quantum spin liquid ground state. Our data…

Strongly Correlated Electrons · Physics 2016-07-20 F. Lang , P. J. Baker , A. A. Haghighirad , Y. Li , D. Prabhakaran , R. Valenti , S. J. Blundell

The complexity of the antiferromagnetic orders observed in the honeycomb iridates is a double-edged sword in the search for a quantum spin-liquid ground state: both attesting that the magnetic interactions provide many of the necessary…

Strongly Correlated Electrons · Physics 2019-02-22 K. A. Modic , B. J. Ramshaw , Nicholas P. Breznay , James G. Analytis , Ross D. McDonald , Arkady Shekhter

In this work, an experimental investigation of an accordion-like system with embedded magnetic inclusion is carried out. It is shown that the way that this structure deforms when subjected to an external magnetic field depends on the…

Applied Physics · Physics 2022-12-15 R. Galea , P. -S. Farrugia , K. K. Dudek , L. Zammit Mangion , J. N. Grima , R. Gatt

We report the experimental and theoretical characterization of the angular-dependent spin dynamics in arrays of ferromagnetic nanodisks arranged on a honeycomb lattice. The magnetic field and microwave frequency dependence, measured by…

Mesoscale and Nanoscale Physics · Physics 2020-05-19 Mojtaba Taghipour Kaffash , Wonbae Bang , Sergi Lendinez , Axel Hoffmann , John B. Ketterson , M. Benjamin Jungfleisch

Artificial square spin ices are structures composed of magnetic elements arranged on a geometrically frustrated lattice and located on the sites of a two-dimensional square lattice, such that there are four interacting magnetic elements at…

Mesoscale and Nanoscale Physics · Physics 2016-05-04 Ezio Iacocca , Sebastian Gliga , Robert L. Stamps , Olle Heinonen

We uncover four exotic coupled spin-charge ground states in the strong coupling limit of the Kondo lattice model at various electronic fillings on a frustrated decorated honeycomb lattice, where each regular honeycomb sublattice point is…

Strongly Correlated Electrons · Physics 2025-12-22 Satyabrata Jana , Sahinur Reja

We use a combination of analytical and numerical techniques to study the phase diagram of the frustrated Heisenberg model on the bilayer honeycomb lattice. Using the Schwinger boson description of the spin operators followed by a mean field…

Strongly Correlated Electrons · Physics 2014-01-08 Hao Zhang , M. Arlego , C. A. Lamas

We calculate the magnetic response of a buckled honeycomb lattice with intrinsic spin-orbit coupling (such as silicene) which supports valley-spin polarized energy bands when subjected to a perpendicular electric field $E_z$. By changing…

Mesoscale and Nanoscale Physics · Physics 2015-01-19 Calvin J. Tabert , J. P. Carbotte , Elisabeth J. Nicol

Inelastic neutron scattering study has been performed in an S=3/2 bilayer honeycomb lattice compound Bi3Mn4O12(NO3) at ambient and high magnetic fields. Relatively broad and monotonically dispersive magnetic excitations were observed at…

Strongly Correlated Electrons · Physics 2020-01-08 M. Matsuda , S. E. Dissanayake , D. L. Abernathy , Y. Qiu , J. R. D. Copley , N. Kumada , M. Azuma

In an extensive computational experiment, we test Polyakov's conjecture that under certain circumstances an isotropic Heisenberg model can develop algebraic spin correlations. We demonstrate the emergence of a multi-spin $\text{U(1)}$ order…

Strongly Correlated Electrons · Physics 2015-10-23 Bhilahari Jeevanesan , Premala Chandra , Piers Coleman , Peter P. Orth

Recent cold atom experiments have realized models where each hyperfine state at an optical lattice site can be regarded as a separate site in a synthetic dimension. In such synthetic ribbon configurations, manipulation of the transitions…

Quantum Gases · Physics 2018-02-14 F. Yılmaz , M. Ö. Oktel

The low-energy magnetic configurations of artificial frustrated spin chains are investigated using magnetic force microscopy and micromagnetic simulations. Contrary to most studies on two-dimensional artificial spin systems where…

Mesoscale and Nanoscale Physics · Physics 2017-08-02 V. -D. Nguyen , Y. Perrin , S. Le Denmat , B. Canals , N. Rougemaille

We consider a tight-binding model on the honeycomb lattice in a magnetic field. For special values of the hopping integrals, the dispersion relation is linear in one direction and quadratic in the other. We find that, in this case, the…

Mesoscale and Nanoscale Physics · Physics 2009-06-09 Petra Dietl , Frederic Piechon , Gilles Montambaux

The study of magnetic correlations in dipolar-coupled nanomagnet systems with synchrotron x-ray scattering provides a means to uncover emergent phenomena and exotic phases, in particular in systems with thermally active magnetic moments.…

The observation of magnetic diode behavior with ultra-low forward voltage of 5 mV renders new venue for energetically efficient spintronic device research in the unconventional system of two-dimensional permalloy honeycomb lattice. Detailed…

Mesoscale and Nanoscale Physics · Physics 2022-10-10 George Yumnam , Moudip Nandi , Pousali Ghosh , Amjed Abdullah , Mahmoud Almasri , Erik Henriksen , Deepak K. Singh

We have combined single crystal neutron and x-ray diffractions to investigate the magnetic and crystal structures of the honeycomb lattice $\rm Na_2IrO_3$. The system orders magnetically below $18.1(2)$ K with Ir$^{4+}$ ions forming zigzag…

Strongly Correlated Electrons · Physics 2012-05-09 Feng Ye , Songxue Chi , Huibo Cao , Bryan C. Chakoumakos , Jaime A. Fernandez-Baca , Radu Custelcean , Tongfei Qi , O. B. Korneta , G. Cao

We study the one-band Hubbard model on the honeycomb lattice using a combination of quantum Monte Carlo (QMC) simulations and static as well as dynamical mean-field theory (DMFT). This model is known to show a quantum phase transition…

Strongly Correlated Electrons · Physics 2020-03-09 Marcin Raczkowski , Robert Peters , Th\d{i} Thu Phùng , Nayuta Takemori , Fakher F. Assaad , Andreas Honecker , Javad Vahedi

We study theoretically the electronic properties of the artificial quantum dot honeycomb lattice defined in a two-dimensional electron gas, focusing on the possibility of achieving a regime in which electronic correlations play a dominant…

Strongly Correlated Electrons · Physics 2023-07-26 Andrzej Biborski , Michał Zegrodnik , Paweł Wójcik , Michał P. Nowak
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