{"total":10,"items":[{"citing_arxiv_id":"2606.19426","ref_index":7,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Three-dimensional Foliated Fractional Quantum Hall Phases","primary_cat":"cond-mat.str-el","submitted_at":"2026-06-17T18:00:00+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":6.0,"formal_verification":"none","one_line_summary":"Numerical evidence from exact diagonalization supports a foliated non-Abelian Fibonacci phase in 9-layer systems alongside stability of decoupled Laughlin states under interlayer pseudopotential interactions.","context_count":1,"top_context_role":"background","top_context_polarity":"background","context_text":"quantum hall effect, Nuclear Physics B360, 362 (1991). [5] C. Nayak, S. H. Simon, A. Stern, M. Freedman, and S. Das Sarma, Non-abelian anyons and topologi- cal quantum computation, Rev. Mod. Phys.80, 1083 (2008). [6] N. Read and E. Rezayi, Beyond paired quantum hall states: Parafermions and incompressible states in the first excited landau level, Phys. Rev. B59, 8084 (1999). [7] E. H. Rezayi and N. Read, Non-abelian quantized hall states of electrons at filling factors 12/5 and 13/5 in the first excited landau level, Phys. Rev. B79, 075306 (2009). [8] R. S. K. Mong, M. P. Zaletel, F. Pollmann, and Z. Papi' c, Fibonacci anyons and charge density order in the 12/5 and 13/5 quantum hall plateaus, Phys. Rev. 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Rev. Lett.49, 405 (1982). [6] D. C. Tsui, H. L. Stormer, and A. C. Gossard, Phys. Rev. Lett.48, 1559 (1982). [7] R. B. Laughlin, Phys. Rev. Lett.50, 1395 (1983). [8] W. Metzner and D. Vollhardt, Phys. Rev. Lett.62, 324 (1989). [9] A. Georges and W. Krauth, Phys. Rev. Lett.69, 1240 (1992). [10] A. Georges, G. Kotliar, W. Krauth, and M. J. Rozen- berg, Rev. Mod. Phys.68, 13 (1996). [11] S. R. White, Phys. Rev. Lett.69, 2863 (1992). [12] U. Schollwöck, Ann. Phys."},{"citing_arxiv_id":"2606.03082","ref_index":4,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Magnetic Symmetries and the Structure of Correlation Functions in Quantum Field Theory","primary_cat":"hep-th","submitted_at":"2026-06-02T03:12:36+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":5.0,"formal_verification":"none","one_line_summary":"Magnetic translation symmetry in QFT with external magnetic field forces charged operator two-point functions to factor into a Schwinger phase times a reduced correlator depending only on relative coordinates.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2606.02501","ref_index":26,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Electrical observation via spin Seebeck effect of fractionalized excitations in a magnetic insulator","primary_cat":"cond-mat.str-el","submitted_at":"2026-06-01T17:10:58+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":6.0,"formal_verification":"none","one_line_summary":"SSE voltage measurements on Dy2Ti2O7 show a peak at monopole proliferation with frequency and angular dependence, interpreted as electrical detection of fractionalized monopoles.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2606.01404","ref_index":9,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Quantized orbital and spin Hall transport: interplay between $sp$-hybridization, altermagnetism and spin-orbit coupling","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-05-31T19:03:02+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":5.0,"formal_verification":"none","one_line_summary":"In a 2D model Hamiltonian, orbital Hall conductivity quantizes when altermagnetism exceeds sp-hybridization while spin Hall quantizes when Rashba SOC is weaker, with both independent of the other coupling and arising from Fermi-surface Berry curvature.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2605.15022","ref_index":3,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Impurity-induced geometric correlations and fractional quantization in quantum Hall systems","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-05-14T16:21:36+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":6.0,"formal_verification":"none","one_line_summary":"Impurity-induced geometric correlations within a Landau level generate fractional quantum Hall states via coherent coupling of cyclotron orbits.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2601.14365","ref_index":3,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Exciton-Anyon Binding in Fractional Chern Insulators: Spectral Fingerprints","primary_cat":"cond-mat.str-el","submitted_at":"2026-01-20T19:00:01+00:00","verdict":"CONDITIONAL","verdict_confidence":"MODERATE","novelty_score":6.0,"formal_verification":"none","one_line_summary":"An exciton forms a bound state with a quasihole in a 1/3-filled fractional Chern insulator, with spectral signatures and binding energies of order 1 meV accessible to optical experiments.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2512.16775","ref_index":23,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Reconstruction of Quantum Fields: CCR, CAR and Transfields","primary_cat":"quant-ph","submitted_at":"2025-12-18T17:07:25+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":6.0,"formal_verification":"none","one_line_summary":"Quotienting distinguishable-particle states under ordered-basis, unitary-invariance, and local-counting assumptions produces creation-annihilation algebras that reproduce transtatistics partition functions.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"1906.11574","ref_index":11,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"New exact analytical results for two quasiparticle excitation in the fractional quantum Hall effect","primary_cat":"cond-mat.str-el","submitted_at":"2019-06-27T12:01:51+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":3.0,"formal_verification":"none","one_line_summary":"Analytical calculation for N≤7 shows composite fermion wavefunction yields lower two-quasiparticle excitation energy per particle than Laughlin, with the difference decreasing as system size increases.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"1906.11562","ref_index":14,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Analytic results of the excited electronic states at $\\upsilon=1/3$ and the Laughlin-Jain microscopic wave function approaches","primary_cat":"cond-mat.str-el","submitted_at":"2019-06-27T11:42:00+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":2.0,"formal_verification":"none","one_line_summary":"Analytic ground-state energies for N≤10 electrons at ν=1 and excited-state composite-fermion energies at ν=1/3 are obtained via complex polar coordinates and compared with prior numerical work.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null}],"limit":50,"offset":0}