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Subaru Observations of Galaxy Clusters at z<1.3 Masayuki Tanaka (University of Tokyo) Tadayuki Kodama (NAOJ) + the PISCES team
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Outline 1 – Observations 2 – Large-Scale Structures 3 – Color-Magnitude Diagrams 4 – Spectral Diagnostics 5 – Summary
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1 – Observations Mauna Kea Observatories
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redshift z=0 z=0.55 (5.4Gyr) z=0.83 (7.0Gyr) Object Photometry Spectroscopy Sloan Digital Sky Survey u g r i z ~260,000 objects (DR2) Suprime-Cam (Subaru) B V R i z FOCAS (Subaru) ~200 objects Suprime-Cam (Subaru) V R i z FOCAS (Subaru) ~300 objects CL0016 RXJ0152
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Photo-z accuracy
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2 – Large-Scale Structures Millenium Simulation
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Large-Scale Structures in the Local Universe data from SDSS DR4
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CL0016 at z=0.55 ACS/ HST Color composition by Ichi Tanaka
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CL0016 at z=0.55 ACS/ HST Color composition by Ichi Tanaka
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Large-Scale Structures CL0016 at z=0.55
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Large-Scale Structures CL0016 at z=0.55 spec. objects at 0.54<z<0.56 spec. objects outside of 0.54<z<0.56 z=0.549 z=0.547 z=0.548 z=0.547 z=0.542 Someone et al in prep.
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RXJ0152 at z=0.83 Color composition by Ichi Tanaka
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RXJ0152 at z=0.83 Large-Scale Structures Tanaka et al. 2006 MNRAS 365, 1392
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RXJ0152 at z=0.83 Large-Scale Structures z=0.844 z=0.842 z=0.745 z=0.782 z=0.835 z=0.837 z=0.839 z=0.844 spec. objects at 0.82<z<0.85 spec. objects outside of 0.82<z<0.85 Tanaka et al. 2006 MNRAS 365, 1392
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RXJ1716 at z=0.81 MS1054 at z=0.83 RDCSJ0910 at z=1.1 RDCSJ1252 at z=1.24 Koyama et al. in prep. Tanaka et al. MNRAS submitted Structures around other high-z clusters
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3 – Color-Magnitude Diagrams Time Color Environment luminosity
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Local / Global Density local density + global density (nearest-neighbor density) (density within r=2Mpc aperture) Field : local < break Group : local > break + global < break Cluster : local > break + global > break
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Cluster / Group / Field Environments redshift z=0 z=0.55 z=0.83 Tanaka et al. 2005 MNRAS 362, 268
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Colour-Magnitude Diagrams red blue z=0 z=0.55 z=0.83 redshift massive less massive Tanaka et al. 2005 MNRAS 362, 268
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Colour Dispersion around CMR z=0.83 z=0.55 z=0
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Giant-to-Dwarf ratio of red galaxies z=0.8 z=0.5 z=0 Tanaka et al. 2005 MNRAS 362, 268 Giant : 10.6<log (M steller /M solar ) Dwarf: 9.7 < log (M steller /M solar ) < 10.6
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Giant : 10.6<log (M steller /M solar ) Dwarf: 9.7 < log (M steller /M solar ) < 10.6 Tanaka et al. 2005 MNRAS 362, 268 Giant-to-Dwarf ratio z=0.8 z=0.5 z=0 1) Galaxies follow the 'down-sizing' evolution. 2) The 'down-sizing' is delayed in low-density environments.
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Colour Dispersion around CMR z=0.83 z=0.55 z=0 1) Galaxies follow the 'down-sizing' evolution. 2) 'Down-sizing' is delayed in low-density environments.
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4 – Spectral Diagnostics
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Composite Spectra of Red Galaxies at z~0.8 Tanaka et al. 2006 MNRAS 365, 1392
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D4000 and Hd D4000 Hd D4000 monotonically changes with time. Hd shows a peak after 0.1 – 1 Gyr of the last episode of star formation.
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Model Star Formation Histories time star formation rate SSP model tau model burst model Bruzual & Charlot 2003 Model : Chabrier IMF between 0.1-100Msolar Solar Metallicity, No dust extinction
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Spectral Diagnostics – SSP model grids: Bruzual & Charlot 2003 contours : galaxies at z=0 preliminary
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Spectral Diagnostics – tau model model grids: Bruzual & Charlot 2003 contours : galaxies at z=0 preliminary
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Spectral Diagnostics – burst model model grids: Bruzual & Charlot 2003 contours : galaxies at z=0 preliminary
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5 – Summary
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Schematic View of Galaxy Evolution Environment Mass Time
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Environment Mass Time Schematic View of Galaxy Evolution
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Environment Mass Time Schematic View of Galaxy Evolution
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Environment Mass Time Schematic View of Galaxy Evolution
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Environment Mass Time Schematic View of Galaxy Evolution
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Environment Mass Time Schematic View of Galaxy Evolution
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Photometric Redshifts from VRiz photometry Redshifts of very blue galaxies deviate....
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