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Quadfit #22
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Quadfit #22
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Original file line number | Diff line number | Diff line change |
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@@ -1,6 +1,6 @@ | ||
using EchelleCCFs | ||
using Test | ||
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import Statistics: mean | ||
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@testset "Check CCF accuracy" begin # TODO repeat for multiple mask shapes | ||
@testset "Tophat mask w/ 1 line" begin | ||
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@@ -135,4 +135,52 @@ using Test | |
@test vfit.rv ≈ 0 atol = 500 # TODO: tune tolerance better | ||
=# | ||
end | ||
@testset "RV injection/extraction" begin | ||
# velocities | ||
amp = 1.0 # meters per second | ||
vel = amp .* sin.(range(0, 2π, length=100)) | ||
mid = 5434.5 | ||
dep = 0.75 | ||
wid = 0.1 | ||
mid_shift = mid .* EchelleCCFs.calc_doppler_factor.(vel) | ||
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# compute gaussian line spectrum | ||
buffer = 0.75 | ||
resolution = 7e5 | ||
Δlnλ = (1.0 / resolution) | ||
wavs = exp.(range(log(mid - buffer), log(mid + buffer), step=Δlnλ)) | ||
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flux = zeros(length(wavs), length(vel)) | ||
for i in eachindex(vel) | ||
flux[:,i] .= @. 1.0 - dep * exp(-((wavs-mid_shift[i])/wid)^2 / 2.0) | ||
end | ||
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# measure ccf | ||
line_list = EchelleCCFs.BasicLineList([mid], [dep]) | ||
speed_of_light = EchelleCCFs.speed_of_light_mps | ||
mask_width = speed_of_light/resolution | ||
mask_shape = TopHatCCFMask(mask_width) | ||
ccf_plan = BasicCCFPlan(line_list=line_list, mask_shape=mask_shape) | ||
v_grid = EchelleCCFs.calc_ccf_v_grid(ccf_plan) | ||
ccf = EchelleCCFs.ccf_1D(wavs, flux, ccf_plan) | ||
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# measure velocities from CCF | ||
mrv_gauss = MeasureRvFromCCFGaussian(frac_of_width_to_fit=0.5) | ||
mrv_quad = MeasureRvFromCCFQuadratic(frac_of_width_to_fit=0.1) | ||
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rvs_gauss = zeros(length(vel)) | ||
sig_gauss = zeros(length(vel)) | ||
rvs_quad = zeros(length(vel)) | ||
sig_quad = zeros(length(vel)) | ||
for i in eachindex(vel) | ||
rvs_gauss[i], sig_gauss[i] = mrv_gauss(v_grid, view(ccf, :, i)) | ||
There was a problem hiding this comment. Choose a reason for hiding this commentThe reason will be displayed to describe this comment to others. Learn more. Could add test that calls version of functions that also take uncertainties in fluxes. |
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rvs_quad[i], sig_quad[i] = mrv_quad(v_grid, view(ccf, :, i)) | ||
end | ||
err_gauss = abs.(rvs_gauss .- mean(rvs_gauss) .- vel) | ||
err_quad = abs.(rvs_quad .- mean(rvs_quad) .- vel) | ||
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# test maximum errors are less than a cm/s | ||
@assert maximum(err_gauss) < 1e-2 | ||
@assert maximum(err_quad) < 1e-2 | ||
end | ||
end |
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Could just test for [-\pi/2,\pi/2) and cut length in half.