2012ApJ...746...85S


Query : 2012ApJ...746...85S

2012ApJ...746...85S - Astrophys. J., 746, 85 (2012/February-2)

The Hubble Space Telescope Cluster Supernova Survey. V. Improving the dark-energy constraints above z > 1 and building an early-type-hosted supernova sample.

SUZUKI N., RUBIN D., LIDMAN C., ALDERING G., AMANULLAH R., BARBARY K., BARRIENTOS L.F., BOTYANSZKI J., BRODWIN M., CONNOLLY N., DAWSON K.S., DEY A., DOI M., DONAHUE M., DEUSTUA S., EISENHARDT P., ELLINGSON E., FACCIOLI L., FADEYEV V., FAKHOURI H.K., FRUCHTER A.S., GILBANK D.G., GLADDERS M.D., GOLDHABER G., GONZALEZ A.H., GOOBAR A., GUDE A., HATTORI T., HOEKSTRA H., HSIAO E., HUANG X., IHARA Y., JEE M.J., JOHNSTON D., KASHIKAWA N., KOESTER B., KONISHI K., KOWALSKI M., LINDER E.V., LUBIN L., MELBOURNE J., MEYERS J., MOROKUMA T., MUNSHI F., MULLIS C., ODA T., PANAGIA N., PERLMUTTER S., POSTMAN M., PRITCHARD T., RHODES J., RIPOCHE P., ROSATI P., SCHLEGEL D.J., SPADAFORA A., STANFORD S.A., STANISHEV V., STERN D., STROVINK M., TAKANASHI N., TOKITA K., WAGNER M., WANG L., YASUDA N., YEE H.K.C. (The Supernova Cosmology Project)

Abstract (from CDS):

We present Advanced Camera for Surveys, NICMOS, and Keck adaptive-optics-assisted photometry of 20 Type Ia supernovae (SNe Ia) from the Hubble Space Telescope (HST) Cluster Supernova Survey. The SNe Ia were discovered over the redshift interval 0.623 < z < 1.415. Of these SNe Ia, 14 pass our strict selection cuts and are used in combination with the world's sample of SNe Ia to derive the best current constraints on dark energy. Of our new SNe Ia, 10 are beyond redshift z = 1, thereby nearly doubling the statistical weight of HST-discovered SNe Ia beyond this redshift. Our detailed analysis corrects for the recently identified correlation between SN Ia luminosity and host galaxy mass and corrects the NICMOS zero point at the count rates appropriate for very distant SNe Ia. Adding these SNe improves the best combined constraint on dark-energy density, ρDE(z), at redshifts 1.0 < z < 1.6 by 18% (including systematic errors). For a flat ΛCDM universe, we find ΩΛ= 0.729 ±0.014 (68% confidence level (CL) including systematic errors). For a flat wCDM model, we measure a constant dark-energy equation-of-state parameter w = -1.013+0.068–0.073(68% CL). Curvature is constrained to ∼0.7% in the owCDM model and to ∼2% in a model in which dark energy is allowed to vary with parameters w0 and wa. Further tightening the constraints on the time evolution of dark energy will require several improvements, including high-quality multi-passband photometry of a sample of several dozen z > 1 SNe Ia. We describe how such a sample could be efficiently obtained by targeting cluster fields with WFC3 on board HST. The updated supernova Union2.1 compilation of 580 SNe is available at http://supernova.lbl.gov/Union.

Abstract Copyright:

Journal keyword(s): cosmological parameters - distance scale - supernovae: general

VizieR on-line data: <Available at CDS (J/ApJ/746/85): table1.dat table2.dat>

Simbad objects: 35

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Number of rows : 35
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 SN 1988U SN* 00 14 24 -30 25.7     22.3     ~ 17 1
2 RCS J022056-0333.3 ClG 02 20 55 -03 33.5           ~ 19 0
3 SCP 06N33 SN* 02 20 57.699 -03 33 23.97           SNIa 7 0
4 SCP 05D0 SN* 02 21 42.066 -03 21 53.12           SNIa 11 0
5 SCP 05D6 SN* 02 21 46.484 -03 22 56.18           SNIa 10 0
6 SCP 06R12 SN* 02 23 00.082 -04 36 03.04           SNIa 7 0
7 Feige 22 WD* 02 30 16.6275391056 +05 15 50.696500968 11.939 12.746 12.798 12.901 13.004 DA2.5 131 0
8 SN 2002fx SN* 03 32 06.80 -27 44 34.4           SNIa 19 1
9 SCP 05P9 SN* 03 37 44.512 -28 43 54.58           SNIa 5 0
10 SCP 05P1 SN* 03 37 50.352 -28 43 02.66           SNIa 6 0
11 GD 72 WD* 06 10 00.3597818856 +28 14 28.367957688   14.63   14.5   DA2.7 28 0
12 ClG J0848+4453 ClG 08 48 34.800 +44 53 41.90           ~ 123 1
13 SCP 06X26 SN* 09 10 37.889 +54 22 29.07           SNIa 6 1
14 ClG J0910+5422 ClG 09 10 44.9 +54 22 09           ~ 91 0
15 SN 1996cl SN* 10 56 59.13 -03 37 36.4       23.53   SNIa: 24 1
16 SCP 06C0 SN* 12 29 25.654 +01 50 56.58           SNIa 13 0
17 NAME XMMU J1229.4+0151 ClG 12 29 28.8 +01 51 34           ~ 27 0
18 SCP 06C1 SN* 12 29 33.012 +01 51 36.67           SNIa 6 0
19 ClG J1252-2927 ClG 12 52 54.4 -29 27 17           ~ 156 0
20 SCP 06E12 SN* 14 15 08.141 +36 12 42.94           SNIa 6 0
21 SCP 06G4 SN* 14 29 18.743 +34 38 37.38           ~ 8 0
22 SCP 06G3 SN* 14 29 28.430 +34 37 23.13           SNIa 6 0
23 [DAB2006b] J143227.42+333225.1 SN* 14 32 27.395 +33 32 24.83           SNIc 113 0
24 SCP 06F12 SN* 14 32 28.748 +33 32 10.05           SNIa 6 0
25 SCP 06H3 SN* 14 34 28.879 +34 27 26.61           SNIa 5 0
26 SCP 06H5 SN* 14 34 30.139 +34 26 57.29           SNIa 6 0
27 SCP 06K0 SN* 14 38 08.366 +34 14 18.08           SNIa 6 0
28 SCP 06K18 SN* 14 38 10.663 +34 12 47.19           SNIa 6 0
29 ClG 1603+4313 ClG 16 04 23.7 +43 04 52           ~ 134 1
30 * alf Lyr dS* 18 36 56.33635 +38 47 01.2802 0.03 0.03 0.03 0.07 0.10 A0Va 2687 1
31 2XMM J220550.2-015928 ClG 22 05 50.7 -01 59 30           ~ 12 0
32 SCP 06A4 SN* 22 16 01.077 -17 37 22.09           SNIa 7 0
33 ClG J2235-2557 ClG 22 35 20.6 -25 57 42           ~ 147 0
34 SCP 06Z5 SN* 22 35 24.966 -25 57 09.61           SNIa 5 0
35 SCP 06U4 SN* 23 45 29.429 -36 32 45.73           SNIa 6 0

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