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3 Pith papers citing it

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2026 2 2025 1

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UNVERDICTED 3

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representative citing papers

Quantum Geometric Quadrupole of Cooper Pairs

cond-mat.supr-con · 2026-05-04 · unverdicted · novelty 8.0

The size of Cooper pairs is given by the trace of their quantum geometric quadrupole moment, with Berry curvature entering via the pair wavefunction phase to impose a geometric lower bound alongside the quantum metric.

Anomalous Hall effect in rhombohedral graphene

cond-mat.mes-hall · 2025-10-23 · unverdicted · novelty 6.0

Calculates anomalous Hall conductivity σ_xy in rhombohedral graphene with weak dense Gaussian impurities and strong sparse impurities by summing intrinsic, side-jump, Gaussian and non-Gaussian skew-scattering diagrams in the Kubo-Streda formalism, plus perturbative warping.

Quantum Landscape of Superconducting Diodes

cond-mat.supr-con · 2026-04-16 · unverdicted · novelty 3.0

Superconducting diodes can provide built-in nonlinearity, nonreciprocity, and quantum features to support scalable, integrated superconducting quantum circuits with improved thermal compatibility.

citing papers explorer

Showing 3 of 3 citing papers.

  • Quantum Geometric Quadrupole of Cooper Pairs cond-mat.supr-con · 2026-05-04 · unverdicted · none · ref 34

    The size of Cooper pairs is given by the trace of their quantum geometric quadrupole moment, with Berry curvature entering via the pair wavefunction phase to impose a geometric lower bound alongside the quantum metric.

  • Anomalous Hall effect in rhombohedral graphene cond-mat.mes-hall · 2025-10-23 · unverdicted · none · ref 5

    Calculates anomalous Hall conductivity σ_xy in rhombohedral graphene with weak dense Gaussian impurities and strong sparse impurities by summing intrinsic, side-jump, Gaussian and non-Gaussian skew-scattering diagrams in the Kubo-Streda formalism, plus perturbative warping.

  • Quantum Landscape of Superconducting Diodes cond-mat.supr-con · 2026-04-16 · unverdicted · none · ref 140

    Superconducting diodes can provide built-in nonlinearity, nonreciprocity, and quantum features to support scalable, integrated superconducting quantum circuits with improved thermal compatibility.