Triple

T17752760
Position Surface form Disambiguated ID Type / Status
Subject Wigner-Seitz radius r_s E443152 entity
Predicate usedIn P98 FINISHED
Object jellium model
The jellium model is a simplified theoretical model in condensed matter physics that treats conduction electrons as a uniform gas moving in a continuous positive background to study the electronic properties of metals.
E1284825 NE FINISHED

How this triple was built (4 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: jellium model | Statement: [Wigner-Seitz radius r_s, usedIn, jellium model]
NED1 Entity disambiguation (via context triple) gpt-5-mini-2025-08-07
Target entity: jellium model
Context triple: [Wigner-Seitz radius r_s, usedIn, jellium model]
  • A. Kohn–Sham equations
    The Kohn–Sham equations are a set of self-consistent single-particle equations in density functional theory that map an interacting many-electron system onto a fictitious non-interacting system with the same electron density.
  • B. Wigner-Seitz radius r_s
    The Wigner-Seitz radius r_s is a dimensionless parameter in condensed matter physics that quantifies the average spacing between electrons in an electron gas, commonly used to characterize correlation strength and phases such as the Wigner crystal.
  • C. nearly-free electron model
    The nearly-free electron model is a quantum mechanical approximation in solid-state physics that describes how electrons move in a weak periodic potential within a crystal lattice, leading to the formation of electronic band structures.
  • D. Hubbard model
    The Hubbard model is a fundamental theoretical model in condensed matter physics that describes interacting electrons on a lattice and is widely used to study phenomena such as magnetism, metal–insulator transitions, and high-temperature superconductivity.
  • E. Lieb–Liniger model
    The Lieb–Liniger model is an exactly solvable quantum many-body system describing one-dimensional bosons with delta-function interactions, fundamental in the study of integrable systems and quantum gases.
  • F. None of above. chosen
  • G. Unsure - the case is ambiguous/there is not enough information to decide.
NEDg Description generation gpt-5.1
Instruction
Generate a one-sentence description of the target entity. 
You are given a context triple in the form (subject, predicate, object), where the object is the target entity. 
# Instructions
Use the triple to infer relevant information about the entity. Describe the entity based on what is most defining, well-known. 
Avoid repeating the information from the triple, unless really essential.
# Response Format
Return only the sentence: "Description: [one-sentence description of the target entity]"
Input
Entity: jellium model
Triple: [Wigner-Seitz radius r_s, usedIn, jellium model]
Generated description
The jellium model is a simplified theoretical model in condensed matter physics that treats conduction electrons as a uniform gas moving in a continuous positive background to study the electronic properties of metals.
NED2 Entity disambiguation (via description) gpt-5-mini-2025-08-07
Target entity: jellium model
Target entity description: The jellium model is a simplified theoretical model in condensed matter physics that treats conduction electrons as a uniform gas moving in a continuous positive background to study the electronic properties of metals.
  • A. Kohn–Sham equations
    The Kohn–Sham equations are a set of self-consistent single-particle equations in density functional theory that map an interacting many-electron system onto a fictitious non-interacting system with the same electron density.
  • B. Wigner-Seitz radius r_s
    The Wigner-Seitz radius r_s is a dimensionless parameter in condensed matter physics that quantifies the average spacing between electrons in an electron gas, commonly used to characterize correlation strength and phases such as the Wigner crystal.
  • C. nearly-free electron model
    The nearly-free electron model is a quantum mechanical approximation in solid-state physics that describes how electrons move in a weak periodic potential within a crystal lattice, leading to the formation of electronic band structures.
  • D. Hubbard model
    The Hubbard model is a fundamental theoretical model in condensed matter physics that describes interacting electrons on a lattice and is widely used to study phenomena such as magnetism, metal–insulator transitions, and high-temperature superconductivity.
  • E. Lieb–Liniger model
    The Lieb–Liniger model is an exactly solvable quantum many-body system describing one-dimensional bosons with delta-function interactions, fundamental in the study of integrable systems and quantum gases.
  • F. None of above. chosen

Provenance (5 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_69d8b9edf16c8190a59ebd245d378f4f completed April 10, 2026, 8:50 a.m.
NER Named-entity recognition batch_69e4841c0540819093a32d759775c61f completed April 19, 2026, 7:28 a.m.
NED1 Entity disambiguation (via context triple) batch_6a0243067e6c8190b94113eb4785faae completed May 11, 2026, 8:58 p.m.
NEDg Description generation batch_6a0244ca6b348190a1c68dc3bf873f1d completed May 11, 2026, 9:06 p.m.
NED2 Entity disambiguation (via description) batch_6a024530b5dc8190a4776863cc01babf completed May 11, 2026, 9:08 p.m.
Created at: April 10, 2026, 10:10 a.m.