Triple

T3554905
Position Surface form Disambiguated ID Type / Status
Subject G. M. Eliashberg E75195 entity
Predicate theoryNamedAfter P24365 FINISHED
Object Eliashberg theory E9105 NE FINISHED

How this triple was built (3 steps)

Every LLM step that produced this triple, in pipeline order — named-entity classification, the disambiguation choices (the exact options shown, with the pick highlighted), and the generated description. The batch + timestamp of each is in the Provenance table below.

NER Named-entity recognition gpt-5-mini
Instruction
Given a phrase, classify it is english named entity (e.g., persons, organizations, works of art) in Latin script, or not (e.g., literals, dates, URLs, verbose phrases). For disambiguation, the statement where the phrase occurs as object is also given. Please return a JSON object with `phrase` (string, the phrase being analyzed) and `is_ne` (boolean, indicating whether the phrase is a Named Entity).
Input
Phrase: Eliashberg theory | Statement: [G. M. Eliashberg, theoryNamedAfter, Eliashberg theory]
NED1 Entity disambiguation (via context triple) gpt-5-mini-2025-08-07
Target entity: Eliashberg theory
Context triple: [G. M. Eliashberg, theoryNamedAfter, Eliashberg theory]
  • A. Eliashberg theory chosen
    Eliashberg theory is an extension of BCS superconductivity that incorporates strong-coupling and frequency-dependent effects to more accurately describe real superconducting materials.
  • B. Fermi liquid theory
    Fermi liquid theory is a framework in condensed matter physics that describes how interacting fermions in a metal behave like long-lived quasiparticles with properties similar to those of a non-interacting Fermi gas.
  • C. Luttinger liquid theory
    Luttinger liquid theory is a framework describing the collective, non-Fermi-liquid behavior of interacting electrons in one-dimensional conductors, where excitations are best understood as bosonic density waves rather than quasiparticles.
  • D. Landau–Pomeranchuk–Migdal effect
    The Landau–Pomeranchuk–Migdal effect is a quantum electrodynamics phenomenon in which high-energy electrons and photons in dense media experience suppressed bremsstrahlung and pair production due to multiple scattering.
  • E. Quantum Theory of Solids
    Quantum Theory of Solids is a foundational physics text that systematically applies quantum mechanics to explain the electronic, thermal, and structural properties of crystalline solids.
  • F. None of above.
  • G. Unsure - the case is ambiguous/there is not enough information to decide.
PD Predicate disambiguation gpt-5-mini-2025-08-07
Target predicate: theoryNamedAfter
Context triple: [G. M. Eliashberg, theoryNamedAfter, Eliashberg theory]
  • A. hasTheoremNamedAfter
    Indicates that a theorem is named in honor of or after a particular person or entity.
  • B. hasAwardNamedAfter
    Indicates that an entity has an award that is named in honor of another entity.
  • C. isNamedFor chosen
    Indicates that one entity bears its name in honor of, or derived from, another entity.
  • D. hasAlgorithmNamedAfter
    Indicates that an entity has an algorithm that is named after another entity.
  • E. hasLawNamedAfter
    Indicates that a law or piece of legislation is named in honor of, or directly after, a particular entity.
  • F. None of above.

Provenance (4 batches)

The batch behind each pipeline step, in order, with when it ran. Timestamps are batch-level — stages were processed in waves, so the object chain (NER → NED1 → NEDg → NED2) reads in order, but predicate / elicitation batches can sit in a different wave.

Step Stage Batch ID Status When
creating Elicitation batch_69ad85d45090819086f34fb85d850a1e completed March 8, 2026, 2:21 p.m.
NER Named-entity recognition batch_69adc05549d88190acdebdd542ea1a67 completed March 8, 2026, 6:30 p.m.
NED1 Entity disambiguation (via context triple) batch_69b3bb95bcc88190abf1ea2efc30faeb completed March 13, 2026, 7:24 a.m.
PD Predicate disambiguation batch_69adb83270ac819083967db0570167d2 completed March 8, 2026, 5:56 p.m.
Created at: March 8, 2026, 3:20 p.m.