# apparent horizon 1/1 # # column 1 = cctk_iteration # column 2 = cctk_time # column 3 = centroid_x # column 4 = centroid_y # column 5 = centroid_z # column 6 = min radius # column 7 = max radius # column 8 = mean radius # column 9 = quadrupole_xx # column 10 = quadrupole_xy # column 11 = quadrupole_xz # column 12 = quadrupole_yy # column 13 = quadrupole_yz # column 14 = quadrupole_zz # column 15 = min x # column 16 = max x # column 17 = min y # column 18 = max y # column 19 = min z # column 20 = max z # column 21 = xy-plane circumference # column 22 = xz-plane circumference # column 23 = yz-plane circumference # column 24 = ratio of xz/xy-plane circumferences # column 25 = ratio of yz/xy-plane circumferences # column 26 = area # column 27 = m_irreducible # column 28 = areal radius # column 29 = expansion Theta_(l) # column 30 = inner expansion Theta_(n) # column 31 = product of the expansions # column 32 = mean curvature # column 33 = gradient of the areal radius # column 34 = gradient of the expansion Theta_(l) # column 35 = gradient of the inner expansion Theta_(n) # column 36 = gradient of the product of the expansions # column 37 = gradient of the mean curvature # column 38 = minimum of the mean curvature # column 39 = maximum of the mean curvature # column 40 = integral of the mean curvature 0 0.000 0.000039 0.000009 0.000000 1.037097639 2.757422636 1.996522276 1.199884718 5.616835435e-06 0.000000000 1.199898774 -0.000000000 1.079941067 -1.896292695 1.896685671 -1.896795844 1.896404298 -1.799352120 1.799352120 12.56580486 10.83709599 11.22743101 0.8624275259 0.8934907981 45.23550768 0.9486473693 1.897294739 1.068527762e-15 -1.470552902 -1.576279560e-15 0.7352764510 0.000000000 0.000000000 0.000000000 0.000000000 0.000000000 0.7071575689 0.7479030207 33.19249618