Encyclopedia Cosmology Cosmology Vacuum Uniformity Passive Fraction Lt One
ARTICLE 3 claims 3 theorems
Cosmology Vacuum Uniformity Passive Fraction Lt One
A single inequality in a machine-checked library says that most of the universe's vacuum energy is locked into phase, and it is a statement about a number, not about the cosmos.
A fraction less than one
In the Recognition Science framework, the vacuum is not empty space but a record of events. The framework models the universe's ledger as a three-dimensional grid of voxels, each holding a cost value. A recognition event, a discrete act of accounting, carries a forced cost given by J(x) = (x + 1/x)/2 - 1. Some of these events are phase-locked, meaning they are committed entries whose maintenance cost is zero. The fraction of such locked modes is a number the framework derives from a combinatorial budget of the carrier grid.
The declaration passive_fraction_lt_one states that this fraction, called passiveFraction, is less than one. Formally, it proves that 11/16 < 1. This is a theorem in the machine-checked library of formal theorems, meaning the inequality is verified by a computer from the definitions alone, with no physical measurement involved. It is a small piece of arithmetic: the fraction 11/16 is simply less than 1. The theorem does not say what the fraction is, only that it is not the whole.
The companion theorem passive_fraction_pos proves that the fraction is greater than zero. Together, the two inequalities place the passive fraction strictly between 0 and 1. This matters because the framework defines the active fraction as 1 minus the passive fraction, and the sum of the two is proved to equal 1. A passive fraction of exactly 1 would leave no room for active modes, and a fraction of 0 would mean no locked entries at all. The inequalities guarantee that both kinds of modes exist in the model.
In Recognition Science, this fraction feeds into a larger claim about the vacuum. The framework proves that the vacuum energy density is spatially uniform, because the fraction is a property of the grid's symmetry, not of any particular location. The inequality itself, however, is only about the number 11/16. It does not by itself establish uniformity, nor does it connect the fraction to any measured value of the cosmological constant. Those are separate steps in the framework's argument, and they are not part of this declaration.
THEOREM passive_fraction_lt_one · IndisputableMonolith/Cosmology/VacuumUniformity.lean
theorem passive_fraction_lt_one : passiveFraction < 1 := by
unfold passiveFraction; norm_num
THEOREM passive_fraction_lt_one · IndisputableMonolith/Cosmology/VacuumUniformity.lean
theorem passive_fraction_lt_one : passiveFraction < 1 := by
unfold passiveFraction; norm_num
THEOREM passive_fraction_pos · IndisputableMonolith/Cosmology/VacuumUniformity.lean
theorem passive_fraction_pos : passiveFraction > 0 := by
unfold passiveFraction; norm_num
What this page does not claim
The inequality does not establish that the vacuum energy density is spatially uniform. The theorem does not connect the fraction 11/16 to any measured value of the cosmological constant. The declaration does not claim that the passive fraction is the only component of the vacuum energy.
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expected axiom basis: [propext, Classical.choice, Quot.sound] (the Lean kernel's standard three; no RS-specific axioms)
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Derived articles
This page is generated by a question-recursion engine: the questions its answers raise become the next pages. The current agenda, with open targets marked red:
- What is the combinatorial budget of the Z³ grid that yields the fraction 11/16?
- How does the framework connect the passive fraction to the measured cosmological constant?
- What distinguishes a phase-locked mode from an active mode in the framework's ledger?
- Does the uniformity theorem rely on the specific value 11/16, or would any fraction between 0 and 1 suffice?
MACHINE LAYER · GROUNDED CLAIM TABLE · CLICK TO EXPAND
THEOREM passive_fraction_lt_one · IndisputableMonolith/Cosmology/VacuumUniformity.lean
theorem passive_fraction_lt_one : passiveFraction < 1 := by unfold passiveFraction; norm_numThe declaration passive_fraction_lt_one states that this fraction, called passiveFraction, is less than one. passive_fraction_lt_one · IndisputableMonolith/Cosmology/VacuumUniformity.leanTHEOREM passive_fraction_lt_one · IndisputableMonolith/Cosmology/VacuumUniformity.lean
theorem passive_fraction_lt_one : passiveFraction < 1 := by unfold passiveFraction; norm_numFormally, it proves that 11/16 < 1. passive_fraction_lt_one · IndisputableMonolith/Cosmology/VacuumUniformity.leanTHEOREM passive_fraction_pos · IndisputableMonolith/Cosmology/VacuumUniformity.lean
theorem passive_fraction_pos : passiveFraction > 0 := by unfold passiveFraction; norm_numThe companion theorem passive_fraction_pos proves that the fraction is greater than zero. passive_fraction_pos · IndisputableMonolith/Cosmology/VacuumUniformity.lean