A multipolar k·p theory for C3v crystals reveals band-dependent total-angular-momentum textures with vorticities |W_n|=1,2,5 that produce nonmonotonic current-induced spin polarization responses.
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16 Pith papers cite this work. Polarity classification is still indexing.
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cond-mat.mes-hall 5 quant-ph 3 cond-mat.mtrl-sci 2 cond-mat.str-el 2 cond-mat.supr-con 2 cond-mat.quant-gas 1 nlin.PS 1verdicts
UNVERDICTED 16representative citing papers
Symmetry classification of measurement-inclusive fermionic dynamics with equivalence between many-body and single-particle schemes, plus post-selection-free adaptive circuits for topological states in four classes.
Finite topological superconductors host nonlocal Cooper pairs tied to hybridized Majorana end modes, revealed by identical low-frequency normal and anomalous Green's functions with strong end-to-end nonlocality.
Quantum metric nematicity produces incident-polarization-dependent Kerr-like polarization rotation in time-reversal symmetric nonmagnetic systems.
Above a critical parametric drive, a cross-Kerr-coupled resonator chain enters a nonlinearity-dictated topological phase with spontaneous symmetry breaking and non-trivial bulk-boundary correspondence.
Coupling trilayer TI film with z-oriented d-wave altermagnet gaps helical edges while preserving two Weyl points, yielding 2D higher-order Weyl semimetals with corner states.
Triplet superconductors exhibit non-relativistic momentum-dependent spin splitting from the pairing order parameter, enabling an Edelstein effect and electric-field-driven spin pumping without relativistic spin-orbit coupling.
Dark solitons in nonlinear SSH lattices preserve intensity dips on constant backgrounds in semi-infinite or finite gaps and show linear stability when intracell coupling greatly exceeds intercell coupling.
P6_3-B30 is a three-dimensional boron crystal that functions as a spinless topological semimetal with a symmetry-enforced nodal surface on the kz=π plane and various Weyl fermions at high-symmetry points.
In disordered variants of the Su-Schrieffer-Heeger model, the entanglement entropy difference ΔS^A between half-filled and near-half-filled ground states is zero in the topological phase and finite in the trivial phase, providing a robust diagnostic that can outperform the topological invariant Q.
Spin Hall conductivity measured in Bi1-xSbx thin films matches bulk tight-binding predictions for both trivial and topological phases, supporting bulk properties determining the effect.
Ab initio VDMC calculations of two-electron scattering in the uniform electron gas yield Landau parameters showing a density-driven underscreening-to-overscreening crossover and an sKO+ ansatz that quantitatively matches measured thermal resistivities in Al, Na, K, and Rb.
A simplified real-space Chern number via supercell Wilson loops is shown to be integer-quantized and is used to demonstrate that polarized disorder preserves topology while uniform disorder drives a phase transition in an extended Rice-Mele model.
Interaction-induced doublons in a ring lattice with OAM map to effective SSH chains and Creutz ladders that support topologically protected edge states.
Step-dependent quantum walks on odd and even cyclic graphs produce gapped and gapless topological phases, rotationally symmetric flat bands in 4n-site graphs, and robust edge states at phase interfaces.
Reinforcement fine-tuning of a generative model produces new topological insulators and crystalline insulators, exemplified by Ge2Bi2O6 with a 0.26 eV full band gap.
citing papers explorer
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Beyond spin-1/2: Multipolar spin-orbit coupling in noncentrosymmetric crystals with time-reversal symmetry
A multipolar k·p theory for C3v crystals reveals band-dependent total-angular-momentum textures with vorticities |W_n|=1,2,5 that produce nonmonotonic current-induced spin polarization responses.
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Free-Fermion Dynamics with Measurements: Topological Classification and Adaptive Preparation of Topological States
Symmetry classification of measurement-inclusive fermionic dynamics with equivalence between many-body and single-particle schemes, plus post-selection-free adaptive circuits for topological states in four classes.
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Nonlocal Cooper pairs in finite topological superconductors and their relation to Majorana nonlocality
Finite topological superconductors host nonlocal Cooper pairs tied to hybridized Majorana end modes, revealed by identical low-frequency normal and anomalous Green's functions with strong end-to-end nonlocality.
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Quantum-metric-nematicity induced Kerr-like polarization rotation without time-reversal symmetry breaking
Quantum metric nematicity produces incident-polarization-dependent Kerr-like polarization rotation in time-reversal symmetric nonmagnetic systems.
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Nonlinearity-driven Topology via Spontaneous Symmetry Breaking
Above a critical parametric drive, a cross-Kerr-coupled resonator chain enters a nonlinearity-dictated topological phase with spontaneous symmetry breaking and non-trivial bulk-boundary correspondence.
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Two-dimensional higher-order Weyl semimetals
Coupling trilayer TI film with z-oriented d-wave altermagnet gaps helical edges while preserving two Weyl points, yielding 2D higher-order Weyl semimetals with corner states.
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Non-Relativistic Spin-Orbit Interaction in Triplet Superconductors: Edelstein Effect and Spin Pumping by Electric Fields
Triplet superconductors exhibit non-relativistic momentum-dependent spin splitting from the pairing order parameter, enabling an Edelstein effect and electric-field-driven spin pumping without relativistic spin-orbit coupling.
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Dark solitons in nonlinear Su-Schrieffer-Heeger lattices
Dark solitons in nonlinear SSH lattices preserve intensity dips on constant backgrounds in semi-infinite or finite gaps and show linear stability when intracell coupling greatly exceeds intercell coupling.
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Symmetry-protected coexistence of a nodal surface and multiple types of Weyl fermions in $P6_3$-$\text{B}_{30}$
P6_3-B30 is a three-dimensional boron crystal that functions as a spinless topological semimetal with a symmetry-enforced nodal surface on the kz=π plane and various Weyl fermions at high-symmetry points.
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Entanglement entropy as a probe of topological phase transitions
In disordered variants of the Su-Schrieffer-Heeger model, the entanglement entropy difference ΔS^A between half-filled and near-half-filled ground states is zero in the topological phase and finite in the trivial phase, providing a robust diagnostic that can outperform the topological invariant Q.
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Spin Hall conductivity in Bi$_{1-x}$Sb$_x$ as an experimental test of bulk-boundary correspondence
Spin Hall conductivity measured in Bi1-xSbx thin films matches bulk tight-binding predictions for both trivial and topological phases, supporting bulk properties determining the effect.
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Two-Electron Correlations in the Metallic Electron Gas
Ab initio VDMC calculations of two-electron scattering in the uniform electron gas yield Landau parameters showing a density-driven underscreening-to-overscreening crossover and an sKO+ ansatz that quantitatively matches measured thermal resistivities in Al, Na, K, and Rb.
-
Real-space formulation of the Chern invariant and topological phases in a disordered Chern insulator
A simplified real-space Chern number via supercell Wilson loops is shown to be integer-quantized and is used to demonstrate that polarized disorder preserves topology while uniform disorder drives a phase transition in an extended Rice-Mele model.
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Topological bound states in a lattice of rings with nearest-neighbour interactions
Interaction-induced doublons in a ring lattice with OAM map to effective SSH chains and Creutz ladders that support topologically protected edge states.
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Quantum walks reveal topological flat bands, robust edge states and topological phase transitions in cyclic graphs
Step-dependent quantum walks on odd and even cyclic graphs produce gapped and gapless topological phases, rotationally symmetric flat bands in 4n-site graphs, and robust edge states at phase interfaces.
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Design Topological Materials by Reinforcement Fine-Tuned Generative Model
Reinforcement fine-tuning of a generative model produces new topological insulators and crystalline insulators, exemplified by Ge2Bi2O6 with a 0.26 eV full band gap.