Cover Page The handle http://hdl.handle.net/1887/25769 holds various files of this Leiden University dissertation. Author: Burg, Remco Fanciscus Johannes van der Title: The distribution of stellar mass in galaxy clusters over cosmic time Issue Date: 2014-05-14
z 1 0.86 < z<1.34 M 200 z 1 0 <z<1 7
z 1
c c z 1 z =1.0
z 1 10 11.3 <M h / < 10 14.2 10 12 z 1 0.1 <z<1.0 z = 0.1 z < 0.1 z =0.5 0.15 <z<0.4 c z z =1
0.86 <z<1.34 R 200 M 200 z 1 Λ Ω = 0.3 Ω Λ = 0.7 = 0.86 <z<1.34 z 3.6µ z 1
z 1 z σ v M 200 R 200 z [ / ] 10 14 700 +90 150 2.4 +1.0 1.2 0.9 +0.1 0.2 780 +80 120 2.5 +0.9 1.0 0.8 +0.1 0.1 750 +80 90 2.9 +1.0 0.9 1.0 +0.1 0.1 640 +120 130 1.7 +1.1 0.8 0.8 +0.2 0.2 660 +70 120 1.9 +0.7 0.9 0.8 +0.1 0.2 500 +40 100 0.8 +0.2 0.4 0.6 +0.1 0.1 1350 +100 100 16.9 +4.0 3.5 1.8 +0.1 0.1 680 +80 110 1.9 +0.7 0.8 0.8 +0.1 0.1 790 +60 110 2.9 +0.7 1.0 0.9 +0.1 0.1 480 +50 100 0.6 +0.2 0.3 0.5 +0.1 0.1 σ v M 200 ugriz
u 10 10.16 3.6µ M 200 [ ] α h(z) M200 σ 1 =, 10 15 α
z 1 M 200 α = 1 3 = + (σ σv h(z) M 200 )=0.07 +0.03 M 200 R 200 20 R 200 R 200 M 1/3 200 0.02 h(z) M 200 ± σ z z σ z =0.036 z 1+z z z z
SFR e t/τ τ M /L M /L M /L M 10 10 M 10 11 M M Φ(M) M dm Φ(M) M = 10 11 R 200 M = 10 11 50 50 R 500
z 1 10 10 z R 200 R 200 z z z R 200
M /L n M /L M /L M /L M,BCG [ ] [ ] n [10 11 ] 16.59 ± 0.01 16.51 +0.04 0.03 3.68 +0.36 0.37 3.56 +0.36 0.54 17.27 ± 0.01 17.06 +0.01 0.01 3.77 +0.13 0.13 4.61 +0.97 0.60 16.40 ± 0.01 16.10 +0.01 0.04 3.82 +0.30 0.37 6.92 +0.30 1.25 17.05 ± 0.01 16.86 +0.02 0.02 3.02 +0.14 0.13 3.36 +0.47 0.94 17.29 ± 0.01 17.03 +0.01 0.03 4.35 +0.22 0.41 2.42 +0.29 0.58 17.11 ± 0.02 16.73 +0.03 0.04 6.87 +0.97 0.93 4.49 +0.15 0.72 15.67 ± 0.01 15.50 +0.00 0.01 3.25 +0.10 0.15 10.91 +0.44 2.40 17.01 ± 0.01 16.96 +0.01 0.02 3.03 +0.18 0.15 3.24 +0.26 0.13 17.41 ± 0.01 17.42 +0.01 0.01 0.83 +0.01 0.01 1.89 +0.23 0.21 17.71 ± 0.02 17.43 +0.01 0.01 5.23 +0.12 0.12 2.36 +0.47 0.40
z 1 ρ =0.49 M 200 z =1 z =1 M /L z =3 < M 200 σ (σ MBCG M 200 )=0.12 +0.03 0.02 (M BCG )= (11.66 ± 0.03) + 0.42 +0.06 0.07 [ (M 200 ) 14.5]
z 1 z 1 0.03 <z<1.63 M /L M 200 M 1.6±0.2 σ R 200 R 500 R 200 R 500 c =2.7 z 1 R 500 =0.632 R 200 M 500 =0.631 M 200 z R 200 R 500
z 1 + R 200 R 500 r 200 r 500 M 200 M 500 c =2.7 R 200 R 500 R 500 10 10
4 25 R 200 R 500 ρ =0.65 R 200 ρ =0.62 R 500 σ R 200 (σ M200, M 200 )=0.08 +0.04 0.05 (M 200, ) = (12.44±0.04)+(0.59±0.10) [ (M 200 ) 14.5] R 500 (σ M500, M 500 )=0.11 +0.05 0.04 (M 500, ) = (12.44 +0.05 0.06)+(0.62±0.12) [ (M 500 ) 14.5] 0.71 ± 0.04 z<0.6 z 1 R 500 z z 1
z 1 R 200 R 500 M 200, M 500, M 500, (3.6µ ) [10 12 ] [10 12 ] [10 12 ] 2.40 +0.16 0.15 2.10 +0.14 0.14 1.89 +0.22 0.20 1.50 +0.18 0.16 5.43 +2.92 1.90 3.30 +0.16 0.15 2.74 +0.14 2.86 +0.25 0.23 1.55 +0.15 1.45 +0.15 0.13 0.94 +0.09 1.00 +0.07 0.07 0.60 +0.06 0.13 0.14 0.08 0.06 7.35 +0.60 0.55 5.68 +0.42 0.39 18.72 +9.65 6.37 3.29 +0.20 0.19 2.75 +0.16 0.15 7.14 +2.19 1.68 1.88 +0.13 0.12 1.38 +0.11 0.10 3.37 +2.58 1.46 1.13 +0.14 0.13 0.92 +0.13 0.11 2.33 +1.56 0.93 µ M /L τ =0.1 z =3 z R 500 M /L M /L M /L z z =0.50
R 200 R 500 M /L µ M /L z =3 τ =0.1 µ R 500 M /L M /L z =3 M /L
z 1 z<0.3 M 500 u i M /L i M /L 0.03 <z<0.13 M /L M /L i M /L M /L 0.52 ± 0.04 M /L M /L 0.15 <z<0.4 M /L 0.89±0.14 M /L z
0 <z<1 R 200 0 <z<1 R 200 z z 10 10.2 M +
z 1 > 10 10.2 > 10 10.2
µ χ 2 c Σ, 7.12 +1.53 Σ, 5.14 +0.54 Σ, 9.46 +2.02 Σ, 7.12 +0.81 Σ, 2.35 +0.90 Σ, 1.63 +0.54 χ 2 /d.o.f. 0.99 0.63 1.62 0.90 0.72 0.36 χ 2 χ 2 z
z 1 6.0 <c<9.0 2σ c 7 c =2.7 z =1 σ( (c)) = 0.15 c =7 250 c = 10 σ =0.1r 200 c =7 2.5 z =1.0 z =0.3 2 10 14
7 10 14 10 c =4.28 ± 0.57 M /L c<6 0.15 <z<0.4 1.0 >z>0.3 0.5 R 200 c
z 1 c =4.0 z =0.3 c =2.8 z z 1 M = 10 10.2 R 200 R 500
c =7 c =2.7 z =0.3 z =1 z =0.3