Fourier phase analysis of SDSS galaxies

被引:25
作者
Hikage, C [1 ]
Matsubara, T
Suto, Y
Park, C
Szalay, AS
Brinkmann, J
机构
[1] Nagoya Univ, Dept Phys & Astron, Nagoya, Aichi 4648602, Japan
[2] Univ Tokyo, Dept Phys, Sch Sci, Tokyo 1130033, Japan
[3] Korea Inst Adv Study, Seoul 20743, South Korea
[4] Johns Hopkins Univ, Dept Phys & Astron, Baltimore, MD 21218 USA
[5] Apache Point Observ, Sunspot, NM 88349 USA
关键词
cosmology : large-scale structure of universe; cosmology : observations; methods : statistical;
D O I
10.1093/pasj/57.5.709
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present a first analysis of the clustering of SDSS galaxies using the distribution function of the sum of Fourier phases over three closed wavevectors. Since the Fourier phases are statistically independent of the Fourier amplitudes, the phase statistics plays a complementary role to the conventional two-point statistics of galaxy clustering. We find that the observed distribution functions of the phase sum are in good agreement with the lowest-order approximation from perturbation theory. From comparison of observations with mock catalogs constructed from N-body simulations, we find that the observed phase correlations for the galaxies within the range of the absolute magnitude, -22 < M-r < -18, agree well with those for A-dominated spatially flat cold dark matter predictions with sigma(8) = 0.9 evolved from the Gaussian initial condition. This agreement implies that the galaxy biasing is approximately linear in redshift space. Instead, assuming that the galaxy biasing is described by a quadratic deterministic function delta(g) = b(1)delta(m) + (b(2)/2)(delta(2)(m)- <delta(2)(m)>) at scale larger than 30 h(-1) Mpc, we find that the resulting b(2)/b(1) is well fitted by b(2)/b(1) = 0.54( +/- 0.06) - 0.62( +/- 0.08) sigma(8) and is almost insensitive to the cosmology and luminosity in those ranges. Indeed, b(2)/b(1) is nearly zero when sigma(8) = 0.9.
引用
收藏
页码:709 / 718
页数:10
相关论文
共 54 条
[1]   The second data release of the Sloan Digital Sky Survey [J].
Abazajian, K ;
Adelman-McCarthy, JK ;
Agüeros, MA ;
Allam, SS ;
Kurt ;
Anderson, SJ ;
Anderson, SF ;
Annis, J ;
Bahcall, NA ;
Baldry, IK ;
Bastian, S ;
Berlind, A ;
Bernardi, M ;
Blanton, MR ;
Bochanski, JJ ;
Boroski, WN ;
Briggs, JW ;
Brinkmann, J ;
Brunner, RJ ;
Budavári, T ;
Carey, LN ;
Carliles, S ;
Castander, FJ ;
Connolly, AJ ;
Csabai, I ;
Doi, M ;
Dong, F ;
Eisenstein, DJ ;
Evans, ML ;
Fan, XH ;
Finkbeiner, DP ;
Friedman, SD ;
Frieman, JA ;
Fukugita, M ;
Gal, RR ;
Gillespie, B ;
Glazebrook, K ;
Gray, J ;
Grebel, EK ;
Gunn, JE ;
Gurbani, VK ;
Hall, PB ;
Hamabe, M ;
Harris, FH ;
Harris, HC ;
Harvanek, M ;
Heckman, TM ;
Hendry, JS ;
Hennessy, GS ;
Hindsley, RB .
ASTRONOMICAL JOURNAL, 2004, 128 (01) :502-512
[2]   The third data release of the Sloan digital Sky Survey [J].
Abazajian, K ;
Adelman-McCarthy, JK ;
Agüeros, MA ;
Allam, SS ;
Anderson, KSJ ;
Anderson, SF ;
Annis, J ;
Bahcall, NA ;
Baldry, IK ;
Bastian, S ;
Berlind, A ;
Bernardi, M ;
Blanton, MR ;
Bochanski, JJ ;
Boroski, WN ;
Brewington, HJ ;
Briggs, JW ;
Brinkmann, J ;
Brunner, RJ ;
Budavári, T ;
Carey, LN ;
Castander, FJ ;
Connolly, AJ ;
Covey, KR ;
Csabai, I ;
Dalcanton, JJ ;
Doi, M ;
Dong, F ;
Eisenstein, DJ ;
Evans, ML ;
Fan, XH ;
Finkbeiner, DP ;
Friedman, SD ;
Frieman, JA ;
Fukugita, M ;
Gillespie, B ;
Glazebrook, K ;
Gray, J ;
Grebel, EK ;
Gunn, JE ;
Gurbani, VK ;
Hall, PB ;
Hamabe, M ;
Harbeck, D ;
Harris, FH ;
Harris, HC ;
Harvanek, M ;
Hawley, SL ;
Hayes, J ;
Heckman, TM .
ASTRONOMICAL JOURNAL, 2005, 129 (03) :1755-1759
[3]   The first data release of the Sloan Digital Sky Survey [J].
Abazajian, K ;
Adelman-McCarthy, JK ;
Agüeros, MA ;
Allam, SS ;
Anderson, SF ;
Annis, J ;
Bahcall, NA ;
Baldry, IK ;
Bastian, S ;
Berlind, A ;
Bernardi, M ;
Blanton, MR ;
Blythe, N ;
Bochanski, JJ ;
Boroski, WN ;
Brewington, H ;
Briggs, JW ;
Brinkmann, J ;
Brunner, RJ ;
Budavári, T ;
Carey, LN ;
Carr, MA ;
Castander, FJ ;
Chiu, K ;
Collinge, MJ ;
Connolly, AJ ;
Covey, KR ;
Csabai, I ;
Dalcanton, JJ ;
Dodelson, S ;
Doi, M ;
Dong, F ;
Eisenstein, DJ ;
Evans, ML ;
Fan, XH ;
Feldman, PD ;
Finkbeiner, DP ;
Friedman, SD ;
Frieman, JA ;
Fukugita, M ;
Gal, RR ;
Gillespie, B ;
Glazebrook, K ;
Gonzalez, CF ;
Gray, J ;
Grebel, EK ;
Grodnicki, L ;
Gunn, JE ;
Gurbani, VK ;
Hall, PB .
ASTRONOMICAL JOURNAL, 2003, 126 (04) :2081-2086
[4]  
[Anonymous], 1992, LARGE SCALE STRUCTUR
[5]   THE STATISTICS OF PEAKS OF GAUSSIAN RANDOM-FIELDS [J].
BARDEEN, JM ;
BOND, JR ;
KAISER, N ;
SZALAY, AS .
ASTROPHYSICAL JOURNAL, 1986, 304 (01) :15-61
[6]   MINIMAL SPANNING-TREES, FILAMENTS AND GALAXY CLUSTERING [J].
BARROW, JD ;
BHAVSAR, SP ;
SONODA, DH .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 1985, 216 (01) :17-35
[7]   Estimating fixed-frame galaxy magnitudes in the Sloan Digital Sky Survey [J].
Blanton, MR ;
Brinkmann, J ;
Csabai, I ;
Doi, M ;
Eisenstein, D ;
Fukugita, M ;
Gunn, JE ;
Hogg, DW ;
Schlegel, DJ .
ASTRONOMICAL JOURNAL, 2003, 125 (05) :2348-2360
[8]   New york university value-added galaxy catalog: A galaxy catalog based on new public surveys [J].
Blanton, MR ;
Schlegel, DJ ;
Strauss, MA ;
Brinkmann, J ;
Finkbeiner, D ;
Fukugita, M ;
Gunn, JE ;
Hogg, DW ;
Ivezic, Z ;
Knapp, GR ;
Lupton, RH ;
Munn, JA ;
Schneider, DP ;
Tegmark, M ;
Zehavi, I .
ASTRONOMICAL JOURNAL, 2005, 129 (06) :2562-2578
[9]   An efficient targeting strategy for multiobject spectrograph surveys: The Sloan Digital Sky Survey "tiling'' algorithm [J].
Blanton, MR ;
Lin, H ;
Lupton, RH ;
Maley, FM ;
Young, N ;
Zehavi, I ;
Loveday, J .
ASTRONOMICAL JOURNAL, 2003, 125 (04) :2276-2286
[10]   Return mapping of phases and the analysis of the gravitational clustering hierarchy [J].
Chiang, LY ;
Coles, P ;
Naselsky, P .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2002, 337 (02) :488-494