Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-06-27T20:34:09.247862Z
Paper Citation Record · LEDGER
As of 15 August 2026, this Paper Citation Record lists 74 of 74 outbound references and 2 inbound Pith citation observations for arXiv:2606.07323.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-06-27T20:34:09.247862Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-15T06:32:42.880941+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links, observed 2026-08-11T04:38:56.461257Z
A source-named dated measurement, never combined with another source.
Source: pith, observed 2026-08-11T04:17:40.359138Z
74 of 74 outbound references displayed
External citation measurements
No source-named external measurement is stored.
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 1
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Roy, Physical Review B90, 165139 (2014)
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Interaction-driven Roton Condensation in C = 2/3 Fractional Quantum Anomalous Hall State
Reference 34
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Anyon dispersion from non-uniform magnetic field on the sphere
Reference 35
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Anyon Dispersion in Aharonov-Casher Bands and Implications for Twisted MoTe${}_2$
Reference 36
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Dispersion of Anyon Bloch Bands
Reference 37
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Theory of magnetoroton bands in moir\'e materials
Reference 39
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Reference 40
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Instability of Laughlin FQH liquids into gapless power-law correlated states with continuous exponents in ideal Chern bands: rigorous results from plasma mapping
Reference 42
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Reference 43
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence (2) where a unit cell contains multiple flux quanta is also possible [60, 61], leading to multiple flat bands and unconventional frac- tional phases
Reference 45
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence (7), one generates anisotropic terms and lower- order contributions such asq4 1,q 2 1q2 2,q 4 2,q 2 1, andq 2
Reference 54
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Their matrix elements vanish identically in the LLL because fermionic three-particle wavefunctions necessarily contain the fac- tor(z 1 −z 2)(z2 −z 3)(z3 −z 1)
Reference 55
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 57
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Reference 58
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 59
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Based on this, tMoTe2 ED spec- tra have been compared with ED spectra of Dirac par- ticles under inhomogeneous magnetic field [65]
Reference 60
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Reference 61
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 64
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 65
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 66
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 67
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 68
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 69
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Reference 70
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 71
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 72
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence Unresolved cited work
Reference 73
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How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence M(0) 2 2 d− M(0) 2 +M (1) 2 6 d3 + 2M(0) 2 + 4M(1) 2 +M (2) 2 15 d5 # +O(d 7),(S68) V LL0 1 =E C
Reference 74
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Observation 06e20010-a9b7-4d77-9b3a-eca43af029b2 · inbound
Tunable Multiband Geometry and Fractional Phases in Higher Vortexable Systems How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence
Reference 61
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Cell Natural Orbitals in Interacting Topological Bands How Similar Can Fractional Chern Insulators Be to Fractional Quantum Hall States? Moir\'e-Enhanced Gaps and Excitation-Spectrum Correspondence
Reference 97
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