activity
20182025
most citedEffective Floquet Hamiltonian in the low-frequency regime

51 citations · 171 across the 13 of their papers we have counts for

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Showing 2020Show all

11 papers · 1 filter

cond-mat.mes-hall2020★ 1 cited

Low-frequency and Moiré Floquet engineering: a review

Martin Rodriguez-Vega, Michael Vogl, Gregory A. Fiete

We review recent work on low-frequency Floquet engineering and its application to quantum materials driven by light, emphasizing van der Waals systems hosting Moiré superlattices.…

cond-mat.mes-hall2020★ 40 cited

Floquet-engineering topological transitions in a twisted transition metal dichalcogenide homobilayer

Michael Vogl, Martin Rodriguez-Vega, Benedetta Flebus +2

Motivated by the recent experimental realization of twisted transition metal dichalcogenide bilayers, we study a simplified model driven by different forms of monochromatic light.…

cond-mat.mes-hall2020

Direct driving of electronic and phononic degrees of freedom in a honeycomb bilayer with infrared light

Martin Rodriguez-Vega, Michael Vogl, Gregory A. Fiete

We study theoretically AB-stacked honeycomb bilayers driven by light in resonance with an infrared phonon within a tight-binding description. We characterize the phonon properties…

cond-mat.str-el2020

Fractional Spin fluctuations and quantum liquid signature in Gd2ZnIrO6

Birender Singh, Deepu Kumar, Vivek Kumar +5

Hitherto, the discrete identification of quantum spin liquid phase, holy grail of condensed matter physics, remains a challenging task experimentally. However, the precursor of qua…

cond-mat.str-el2020

The Future of the Correlated Electron Problem

A. Alexandradinata, N. P. Armitage, Andrey Baydin +44

A central problem in modern condensed matter physics is the understanding of materials with strong electron correlations. Despite extensive work, the essential physics of many of t…

cond-mat.str-el2020

Coupling of lattice, spin and intra-configurational excitations of Eu3+ in Eu2ZnIrO6

Birender Singh, M. Vogl, S. Wurmehl +3

In Eu2ZnIrO6, effectively two atoms are active i.e. Ir is magnetically active, which results in complex magnetic ordering within the Ir sublattice at low temperature. On the other…