{"query": "C. J. Morningstar 1999 — Glueball spectrum from an anisotrop", "count": 20, "results": [{"id": "card_theory_electromagnetic_spectrum", "title": "The electromagnetic spectrum & modulation (radio to gamma, one axis)", "shelf": "theories", "surface": "secular", "snippet": "The electromagnetic spectrum & modulation (radio to gamma, one axis) — an engine domain that can touch it: physics. Calibration: seals — c = fλ, photon energy E = hf, and bandwidth relations all recom", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "generated": false}, {"id": "card_src_mill_morningstar_peardon_1999", "title": "C. J. Morningstar 1999 — Glueball spectrum from an anisotropic lattice study", "shelf": "millennium", "surface": "secular", "snippet": "C. J. Morningstar, M. Peardon (1999). Glueball spectrum from an anisotropic lattice study. Phys. Rev. D 60 (1999) 034509. DOI 10.1103/PhysRevD.60.034509. arXiv: hep-lat/9901004. Canonical: https://doi", "authority_tier": "reference", "source": "C. J. Morningstar, M. Peardon (1999), Phys. Rev. D 60 (1999) 034509", "readable": false, "generated": false}, {"id": "card_theory_spectral_geometry", "title": "Spectral geometry (can one hear the shape of a drum?)", "shelf": "theories", "surface": "secular", "snippet": "Spectral geometry (can one hear the shape of a drum?) — an engine domain that can touch it: mathematics. Calibration: partial — specific relations verify; the theory as a whole is not a sealable compu", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (lone-domain seeding)", "readable": false, "generated": false}, {"id": "card_theory_spectroscopy", "title": "Spectroscopy (how we know what a distant thing is made of)", "shelf": "theories", "surface": "secular", "snippet": "Spectroscopy (how we know what a distant thing is made of) — an engine domain that can touch it: optics. Calibration: seals — wavelengths, Doppler shifts and Wien's law all recompute and check. Split ", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "generated": false}, {"id": "card_src_pron_spectrums", "title": "spectrums", "shelf": "pronunciation", "surface": "secular", "snippet": "spectrums: pronounced (ARPABET) S P EH1 K T R AH0 M Z. From the CMU Pronouncing Dictionary — the standard machine-readable pronunciations of North American English.", "authority_tier": "reference", "source": "CMU Pronouncing Dictionary (cmudict) — BSD-2-Clause, Carnegie Mellon", "readable": false, "generated": false}, {"id": "card_src_pron_morningstar", "title": "morningstar", "shelf": "pronunciation", "surface": "secular", "snippet": "morningstar: pronounced (ARPABET) M AO1 R N IH0 NG S T AA2 R. From the CMU Pronouncing Dictionary — the standard machine-readable pronunciations of North American English.", "authority_tier": "reference", "source": "CMU Pronouncing Dictionary (cmudict) — BSD-2-Clause, Carnegie Mellon", "readable": false, "generated": false}, {"id": "card_src_word_atomic_spectrum", "title": "atomic spectrum", "shelf": "dictionary", "surface": "secular", "snippet": "atomic spectrum: (noun) (physics) a spectrum of radiation caused by electron transitions within an atom; the series of spectrum lines is characteristic of the element", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_src_word_radio_spectrum", "title": "radio spectrum", "shelf": "dictionary", "surface": "secular", "snippet": "radio spectrum: (noun) the entire spectrum of electromagnetic frequencies used for communications; includes frequencies used for radio and radar and television — syn: radio-frequency spectrum", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_src_word_radio_frequency_spectrum", "title": "radio-frequency spectrum", "shelf": "dictionary", "surface": "secular", "snippet": "radio-frequency spectrum: (noun) the entire spectrum of electromagnetic frequencies used for communications; includes frequencies used for radio and radar and television — syn: radio spectrum", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_theory_noncommutative_geometry", "title": "Noncommutative geometry & the spectral triple (Connes)", "shelf": "theories", "surface": "secular", "snippet": "Noncommutative geometry & the spectral triple (Connes) — an engine domain that can touch it: mathematics. Calibration: map-only — out of scope for sealing — foundational, empirical or interpretive (RE", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (lone-domain seeding)", "readable": false, "generated": false}, {"id": "card_floor_yang_mills", "title": "The Yang-Mills chain - from the gauge field and the axioms to the mass gap", "shelf": "codex", "surface": "secular", "snippet": "Two trees. The gauge field: Maxwell, Weyl's gauge principle (1929), Yang and Mills' non-abelian field (1954). The axioms: Wightman's (1956) and Osterwalder-Schrader's Euclidean ones (1973) - what it m", "authority_tier": "engine_derived", "source": "Narrow Highway - a chain on the one map (operator seed)", "readable": false, "generated": false}, {"id": "card_theory_chemical_bonding", "title": "Chemical bonding (valence-bond / molecular-orbital)", "shelf": "theories", "surface": "secular", "snippet": "Chemical bonding (valence-bond / molecular-orbital) — an engine domain that can touch it: chemistry. Calibration: partial — some relations verify; the full theory is map-only. Atoms bond to lower thei", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "generated": false}, {"id": "card_theory_bohr_quantum_model_of_the_atom", "title": "Bohr / quantum model of the atom", "shelf": "theories", "surface": "secular", "snippet": "Bohr / quantum model of the atom — an engine domain that can touch it: atomic. Calibration: seals — energy levels and shell capacities compute. Electrons occupy discrete orbits with QUANTISED energies", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "generated": false}, {"id": "card_theory_acoustic_wave_theory", "title": "Acoustic wave theory (harmonics, Doppler)", "shelf": "theories", "surface": "secular", "snippet": "Acoustic wave theory (harmonics, Doppler) — an engine domain that can touch it: acoustics. Calibration: seals — frequencies, harmonics and Doppler shifts compute. Sound is a PRESSURE wave in a medium,", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "generated": false}, {"id": "card_theory_quasicrystals", "title": "Quasicrystals (forbidden symmetry in real matter)", "shelf": "theories", "surface": "secular", "snippet": "Matter that is ordered but not periodic. Dan Shechtman recorded an electron diffraction pattern from rapidly cooled Al-Mn on 8 April 1982 showing SHARP Bragg peaks with ten-fold symmetry — sharp peaks", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "generated": false}, {"id": "card_theory_quantization", "title": "Quantization (why nature comes in whole units)", "shelf": "theories", "surface": "secular", "snippet": "Quantization (why nature comes in whole units) — an engine domain that can touch it: physics. Calibration: seals — energy levels, photon energies and charge multiples compute exactly. Certain physical", "authority_tier": "reference", "source": "The Theory Assay — calibrated, not judged (docs/THEORY_CATALOG.md)", "readable": false, "generated": false}, {"id": "card_src_word_acoustic_spectrum", "title": "acoustic spectrum", "shelf": "dictionary", "surface": "secular", "snippet": "acoustic spectrum: (noun) the distribution of energy as a function of frequency for a particular sound source — syn: sound spectrum", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_src_word_sound_spectrum", "title": "sound spectrum", "shelf": "dictionary", "surface": "secular", "snippet": "sound spectrum: (noun) the distribution of energy as a function of frequency for a particular sound source — syn: acoustic spectrum", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_src_word_absorption_spectrum", "title": "absorption spectrum", "shelf": "dictionary", "surface": "secular", "snippet": "absorption spectrum: (noun) the spectrum of electromagnetic radiation that has passed through a medium that absorbed radiation of certain wavelengths", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}, {"id": "card_src_word_line_spectrum", "title": "line spectrum", "shelf": "dictionary", "surface": "secular", "snippet": "line spectrum: (noun) a spectrum in which energy is concentrated at particular wavelengths; produced by excited atoms and ions as they fall back to a lower energy level", "authority_tier": "reference", "source": "WordNet 3.0, Princeton University (WordNet License)", "readable": false, "generated": false}], "house": {"door": "FIND", "kind": "cards", "trail": "results", "seal": null, "next_step": {"do": "open the top card", "door": "FIND", "tool": "card_get", "params": {"id": "card_theory_electromagnetic_spectrum"}}, "ends": "a verdict or a card · the trail · a seal · one next step"}}