The large-scale 21-cm power spectrum from reionization

被引:19
作者
Georgiev, Ivelin [1 ]
Mellema, Garrelt [1 ]
Giri, Sambit K. [2 ]
Mondal, Rajesh [1 ]
机构
[1] Stockholm Univ, Oskar Klein Ctr, Dept Astron, SE-10691 Stockholm, Sweden
[2] Univ Zurich, Inst Computat Sci, Winterthurerstr 190, CH-8057 Zurich, Switzerland
基金
瑞典研究理事会;
关键词
cosmology: theory; large-scale structure of Universe; dark ages; reionization; first stars; MEAN FREE-PATH; SIMULATING COSMIC REIONIZATION; APPROXIMATE-TO; 9.1; INTERGALACTIC MEDIUM; NEUTRAL HYDROGEN; HII-REGIONS; EPOCH; REDSHIFT; CONSTRAINTS; QUASAR;
D O I
10.1093/mnras/stac1230
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Radio interferometers, such as the Low-Frequency Array and the future Square Kilometre Array, are attempting to measure the spherically averaged 21-cm power spectrum from the epoch of reionization. Understanding of the dominant physical processes which influence the power spectrum at each length-scale is therefore crucial for interpreting any future detection. We study a decomposition of the 21-cm power spectrum and quantify the evolution of its constituent terms for a set of numerical and semi-numerical simulations of a volume of (714 Mpc)(3), focusing on large scales with k less than or similar to 0.3 Mpc(-1). We find that after similar to 10 per cent of the universe has been ionized, the 21-cm power spectrum follows the power spectrum of neutral hydrogen fluctuations, which itself beyond a certain scale follows the matter power spectrum. Hence the signal has a two-regime form where the large-scale signal is a biased version of the cosmological density field, and the small-scale power spectrum is determined by the astrophysics of reionization. We construct a bias parameter to investigate the relation between the large-scale 21-cm signal and the cosmological density field. We find that the transition scale between the scale-independent and scale-dependent bias regimes is directly related to the value of the mean free path of ionizing photons (lambda(MFP)), and is characterised by the empirical formula k(trans) approximate to 2/lambda(MFP). Furthermore, we show that the numerical implementation of the mean free path effect has a significant impact on the shape of this transition. Most notably, the transition is more gradual if the mean free path effect is implemented as an absorption process rather than as a barrier.
引用
收藏
页码:5109 / 5124
页数:16
相关论文
共 103 条
[1]   Planck 2013 results. XVI. Cosmological parameters [J].
Ade, P. A. R. ;
Aghanim, N. ;
Armitage-Caplan, C. ;
Arnaud, M. ;
Ashdown, M. ;
Atrio-Barandela, F. ;
Aumont, J. ;
Baccigalupi, C. ;
Banday, A. J. ;
Barreiro, R. B. ;
Bartlett, J. G. ;
Battaner, E. ;
Benabed, K. ;
Benoit, A. ;
Benoit-Levy, A. ;
Bernard, J. -P. ;
Bersanelli, M. ;
Bielewicz, P. ;
Bobin, J. ;
Bock, J. J. ;
Bonaldi, A. ;
Bond, J. R. ;
Borrill, J. ;
Bouchet, F. R. ;
Bridges, M. ;
Bucher, M. ;
Burigana, C. ;
Butler, R. C. ;
Calabrese, E. ;
Cappellini, B. ;
Cardoso, J. -F. ;
Catalano, A. ;
Challinor, A. ;
Chamballu, A. ;
Chary, R. -R. ;
Chen, X. ;
Chiang, H. C. ;
Chiang, L. -Y ;
Christensen, P. R. ;
Church, S. ;
Clements, D. L. ;
Colombi, S. ;
Colombo, L. P. L. ;
Couchot, F. ;
Coulais, A. ;
Crill, B. P. ;
Curto, A. ;
Cuttaia, F. ;
Danese, L. ;
Davies, R. D. .
ASTRONOMY & ASTROPHYSICS, 2014, 571
[2]   Planck 2018 results: I. Overview and the cosmological legacy of Planck [J].
Aghanim, N. ;
Akrami, Y. ;
Arroja, F. ;
Ashdown, M. ;
Aumont, J. ;
Baccigalupi, C. ;
Ballardini, M. ;
Banday, A. J. ;
Barreiro, R. B. ;
Bartolo, N. ;
Basak, S. ;
Battye, R. ;
Benabed, K. ;
Bernard, J. -P. ;
Bersanelli, M. ;
Bielewicz, P. ;
Bock, J. J. ;
Bond, J. R. ;
Borrill, J. ;
Bouchet, F. R. ;
Boulanger, F. ;
Bucher, M. ;
Burigana, C. ;
Butler, R. C. ;
Calabrese, E. ;
Cardoso, J. -F. ;
Carron, J. ;
Casaponsa, B. ;
Challinor, A. ;
Chiang, H. C. ;
Colombo, L. P. L. ;
Combet, C. ;
Contreras, D. ;
Crill, B. P. ;
Cuttaia, F. ;
de Bernardis, P. ;
de Zotti, G. ;
Delabrouille, J. ;
Delouis, J. -M. ;
Desert, F. -X. ;
Di Valentino, E. ;
Dickinson, C. ;
Diego, J. M. ;
Donzelli, S. ;
Dore, O. ;
Douspis, M. ;
Ducout, A. ;
Dupac, X. ;
Efstathiou, G. ;
Elsner, F. .
ASTRONOMY & ASTROPHYSICS, 2020, 641
[3]   Quasar HII regions during cosmic reionization [J].
Alvarez, Marcelo A. ;
Abel, Tom .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2007, 380 (01) :L30-L34
[4]   THE EFFECT OF ABSORPTION SYSTEMS ON COSMIC REIONIZATION [J].
Alvarez, Marcelo A. ;
Abel, Tom .
ASTROPHYSICAL JOURNAL, 2012, 747 (02)
[5]   An 800-million-solar-mass black hole in a significantly neutral Universe at a redshift of 7.5 [J].
Banados, Eduardo ;
Venemans, Bram P. ;
Mazzucchelli, Chiara ;
Farina, Emanuele P. ;
Walter, Fabian ;
Wang, Feige ;
Decarli, Roberto ;
Stern, Daniel ;
Fan, Xiaohui ;
Davies, Frederick B. ;
Hennawi, Joseph F. ;
Simcoe, Robert A. ;
Turner, Monica L. ;
Rix, Hans-Walter ;
Yang, Jinyi ;
Kelson, Daniel D. ;
Rudie, Gwen C. ;
Winters, Jan Martin .
NATURE, 2018, 553 (7689) :473-+
[6]   Light-cone anisotropy in 21-cm fluctuations during the epoch of reionization [J].
Barkana, Rennan ;
Loeb, Abraham .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2006, 372 (01) :L43-L47
[7]   The mean free path of ionizing photons at 5 < z < 6: evidence for rapid evolution near reionization [J].
Becker, George D. ;
D'Aloisio, Anson ;
Christenson, Holly M. ;
Zhu, Yongda ;
Worseck, Gabor ;
Bolton, James S. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2021, 508 (02) :1853-1869
[8]   The impact of inhomogeneous subgrid clumping on cosmic reionization - II. Modelling stochasticity [J].
Bianco, Michele ;
Iliev, Ilian T. ;
Ahn, Kyungjin ;
Giri, Sambit K. ;
Mao, Yi ;
Park, Hyunbae ;
Shapiro, Paul R. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2021, 504 (02) :2443-2460
[9]   An absorption profile centred at 78 megahertz in the sky-averaged spectrum [J].
Bowman, Judd D. ;
Rogers, Alan E. E. ;
Monsalve, Raul A. ;
Mozdzen, Thomas J. ;
Mahesh, Nivedita .
NATURE, 2018, 555 (7694) :67-+
[10]   Science with the Murchison Widefield Array [J].
Bowman, Judd D. ;
Cairns, Iver ;
Kaplan, David L. ;
Murphy, Tara ;
Oberoi, Divya ;
Staveley-Smith, Lister ;
Arcus, Wayne ;
Barnes, David G. ;
Bernardi, Gianni ;
Briggs, Frank H. ;
Brown, Shea ;
Bunton, John D. ;
Burgasser, Adam J. ;
Cappallo, Roger J. ;
Chatterjee, Shami ;
Corey, Brian E. ;
Coster, Anthea ;
Deshpande, Avinash ;
deSouza, Ludi ;
Emrich, David ;
Erickson, Philip ;
Goeke, Robert F. ;
Gaensler, B. M. ;
Greenhill, Lincoln J. ;
Harvey-Smith, Lisa ;
Hazelton, Bryna J. ;
Herne, David ;
Hewitt, Jacqueline N. ;
Johnston-Hollitt, Melanie ;
Kasper, Justin C. ;
Kincaid, Barton B. ;
Koenig, Ronald ;
Kratzenberg, Eric ;
Lonsdale, Colin J. ;
Lynch, Mervyn J. ;
Matthews, Lynn D. ;
McWhirter, S. Russell ;
Mitchell, Daniel A. ;
Morales, Miguel F. ;
Morgan, Edward H. ;
Ord, Stephen M. ;
Pathikulangara, Joseph ;
Prabu, Thiagaraj ;
Remillard, Ronald A. ;
Robishaw, Timothy ;
Rogers, Alan E. E. ;
Roshi, Anish A. ;
Salah, Joseph E. ;
Sault, Robert J. ;
Shankar, N. Udaya .
PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF AUSTRALIA, 2013, 30