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From the 1 of 6 linked papers with an AI index.

activity
20242026
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6 papers

cond-mat.str-el2026

Spin-incoherent Mott-Thouless pumps

Ajesh Kumar, Urban F. P. Seifert, Erez Berg +1

The paper introduces Mott‑Thouless pumps that achieve quantized charge transport in spin‑incoherent, high‑entropy Mott states, demonstrating analytical protection of the pumped cha…

cond-mat.str-el2026

Exchange-frustrated quadrupoles on the honeycomb lattice: Flavor-wave spectra, classical degeneracies and parton constructions

Partha Sarker, Han Ma, Urban F. P. Seifert

We study the quadrupolar Kitaev model, an honeycomb-lattice model with frustrated bond-dependent quadrupolar interactions. Using complementary methods and expanding around co…

cond-mat.str-el2025

Projectively implemented altermagnetism in an exactly solvable quantum spin liquid

Avedis Neehus, Achim Rosch, Johannes Knolle +1

Altermagnets are a new class of symmetry-compensated magnets with large spin splittings. Here, we show that the notion of altermagnetism extends beyond the realm of Landau-type ord…

cond-mat.str-el2025

Fractionalized Superconductivity Mediated by Majorana Fermions in the Kitaev-Kondo Lattice

Matthew Bunney, Urban F. P. Seifert, Stephan Rachel +1

Superconductivity usually emerges from a metallic normal state which follows the Fermi-liquid paradigm. If, in contrast, the normal state is a fractionalized non-Fermi liquid, then…

cond-mat.str-el2025

Topologically enabled superconductivity: possible implications for rhombohedral graphene

Francesca Paoletti, Daniele Guerci, Giorgio Sangiovanni +2

We present a topological mechanism for superconductivity emerging from Chern-2 insulators. While, naively, time-reversal symmetry breaking is expected to prevent superconductivity,…

cond-mat.str-el2024

Stability of algebraic spin liquids coupled to quantum phonons

Francesco Ferrari, Josef Willsher, Urban F. P. Seifert +2

Algebraic spin liquids are quantum disordered phases of insulating magnets which exhibit fractionalized gapless excitations and power-law correlations. Quantum spin liquids in this…