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interpret_results for intervals
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@ -224,7 +224,7 @@ function certify_SOS_decomposition(elt::GroupRingElem, orderunit::GroupRingElem,
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"Interval aritmetic (certified) λ ∈"]
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@info join(info_strs, "\n") certified_λ
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return certified_λ.lo
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return certified_λ
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end
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function spectral_gap(Δ::GroupRingElem, λ::Number, Q::AbstractMatrix; R::Int=2)
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@ -238,7 +238,8 @@ end
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#
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###############################################################################
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Kazhdan(λ::Number, N::Integer) = sqrt(2*λ/N)
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Kazhdan_constant(λ::Number, N::Integer) = sqrt(2*λ/N)
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Kazhdan_constant(λ::Interval, N::Integer) = IntervalArithmetic.inf(sqrt(2*λ/N))
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function check_property_T(sett::Settings)
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@info sett
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@ -259,21 +260,24 @@ function Base.show(io::IO, sett::Settings)
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print(io, join(info_strs, "\n"))
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end
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function interpret_results(sett::Settings, sgap::Number)
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function interpret_results(name::String, sgap::Number, N::Integer)
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if sgap > 0
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Kazhdan_κ = Kazhdan(sgap, length(sett.S))
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if Kazhdan_κ > 0
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@info "κ($(sett.name), S) ≥ $Kazhdan_κ: Group HAS property (T)!"
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κ = Kazhdan_constant(sgap, N)
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@info "κ($name, S) ≥ $κ: Group HAS property (T)!"
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return true
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end
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end
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info_strs = ["The certified lower bound on the spectral gap is negative:",
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"λ($(sett.name), S) ≥ 0.0 > $sgap",
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"This tells us nothing about property (T)"]
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info_strs = [
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"The certified lower bound on the spectral gap is negative:",
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"λ($name, S) ≥ 0.0 > $sgap",
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"This tells us nothing about property (T)",
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]
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@info join(info_strs, "\n")
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return false
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end
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interpret_results(sett::Settings, sgap::Number) =
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interpret_results(sett.name, sgap, length(sett.S))
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function spectral_gap(sett::Settings)
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fp = PropertyT.fullpath(sett)
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isdir(fp) || mkpath(fp)
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