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Added eigenvals_ratio
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1 changed files with 11 additions and 7 deletions
18
src/shape.jl
18
src/shape.jl
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@ -1,4 +1,5 @@
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using StaticArrays: SVector, SMatrix
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using LinearAlgebra: eigvals, Hermitian
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function project_to_unit_circle(x, l)
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φ = (x + l) * π / l
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@ -24,15 +25,13 @@ function center_of_mass(args)
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# No need for 1/N with atan
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# If proj is (0, 0) then COM is 0 or L or -L. Here, 0 is choosen with θ = π
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if (round(x_proj_sum[1]; digits=digits) == 0) &&
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(round(x_proj_sum[2]; digits=digits) == 0)
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if round(x_proj_sum[1]; digits=digits) == round(x_proj_sum[2]; digits=digits) == 0
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x_θ = π
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else
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x_θ = atan(x_proj_sum[2], x_proj_sum[1])
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end
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if (round(y_proj_sum[1]; digits=digits) == 0) &&
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(round(y_proj_sum[2]; digits=digits) == 0)
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if round(y_proj_sum[1]; digits=digits) == round(y_proj_sum[2]; digits=digits) == 0
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y_θ = π
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else
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y_θ = atan(y_proj_sum[2], y_proj_sum[1])
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@ -53,13 +52,18 @@ function gyration_tensor(args)
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for p in args.particles
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c = p.c
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x = c[1] - COM[1]
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y = c[2] - COM[2]
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x = restrict_coordinate(c[1] - COM[1]; l=args.l)
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y = restrict_coordinate(c[2] - COM[2]; l=args.l)
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S11 += x^2
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S12 += x * y
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S22 += y^2
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end
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return SMatrix{2,2}(S11, S12, S12, S22)
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return Hermitian(SMatrix{2,2}(S11, S12, S12, S22))
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end
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function gyration_tensor_eigvals_ratio(args)
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ev = eigvals(gyration_tensor(args)) # Eigenvalues are sorted
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return ev[1] / ev[2]
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end
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