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Dark Matter and Cosmic Web Story

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by Jaan Einasto


  Persic, M. & Salucci, P. 1991, The universal galaxy rotation curve, ApJ, 368, 60

  Persic, M., Salucci, P., & Stel, F. 1996, The universal rotation curve of spiral galaxies — I. The dark matter connection, MNRAS, 281, 27

  Pietronero, L. 1987, The fractal structure of the universe: Correlations of galaxies and clusters and the average mass density, Physica A Statistical Mechanics and its Applications, 144, 257

  Planck Collaboration, Ade, P. A. R., Aghanim, N., et al. 2013, Planck 2013 results. XVI. Cosmological parameters, ArXiv:1303.5076

  Platen, E., van de Weygaert, R., & Jones, B. J. T. 2007, A cosmic watershed: the WVF void detection technique, MNRAS, 380, 551

  Polisensky, E. & Ricotti, M. 2011, Constraints on the dark matter particle mass from the number of Milky Way satellites, Phys. Rev. D, 83, 043506

  Poveda, A. & Allen, C. 1975, The Mass and Tidal Radius of Omega Centauri, ApJ, 197, 155

  Praton, E. A., Melott, A. L., & McKee, M. Q. 1997, The Bull’s-Eye Effect: Are Galaxy Walls Observationally Enhanced? ApJ, 479, L15

  Press, W. H., Rybicki, G. B., & Hewitt, J. N. 1992a, The time delay of gravitational lens 0957 + 561. I - Methodology and analysis of optical photometric data. II - Analysis of radio data and combined optical-radio analysis, ApJ, 385, 404

  Press, W. H., Rybicki, G. B., & Hewitt, J. N. 1992b, The Time Delay of Gravitational Lens 0957+561. II. Analysis of Radio Data and Combined Optical-Radio Analysis, ApJ, 385, 416

  Press, W. H. & Schechter, P. 1974, Formation of Galaxies and Clusters of Galaxies by Self-Similar Gravitational Condensation, ApJ, 187, 425

  Primack, J. R. 1984, Dark matter, galaxies, and large scale structure in the universe, NASA STI/Recon Technical Report N, 85, 27786

  Primack, J. R. & Blumenthal, G. R. 1984, What is the dark matter? — Implications for galaxy formation and particle physics, in NATO ASIC Proc. 117: Formation and Evolution of Galaxies and Large Structures in the Universe, ed. J. Audouze & J. Tran Thanh Van, 163

  Profumo, S. 2013, TASI 2012 Lectures on Astrophysical Probes of Dark Matter, ArXiv: astro-ph.HZ1001.4086

  Reed, D. S., Bower, R., Frenk, C. S., et al. 2005, The first generation of star-forming haloes, MNRAS, 363, 393

  Rees, M. J. 2000, Just six numbers: the deep forces that shape the universe, ed. Rees, M. (Basic Books)

  Rees, M. J. 1977, Cosmology and Galaxy Formation, in Evolution of Galaxies and Stellar Populations, ed. B. M. Tinsley & R. B. Larson, 339

  Refsdal, S. 1964, On the possibility of determining Hubble’s parameter and the masses of galaxies from the gravitational lens effect, MNRAS, 128, 307

  Retana-Montenegro, E., van Hese, E., Gentile, G., Baes, M., & Frutos-Alfaro, F. 2012, Analytical properties of Einasto dark matter haloes, A&A, 540, A70

  Riess, A. G., Filippenko, A. V., Challis, P., et al. 1998, Observational Evidence from Supernovae for an Accelerating Universe and a Cosmological Constant, AJ, 116, 1009

  Riess, A. G., Strolger, L.-G., Casertano, S., et al. 2007, New Hubble Space Telescope Discoveries of Type Ia Supernovae at z > 1 : Narrowing Constraints on the Early Behavior of Dark Energy, ApJ, 659, 98

  Roberts, M. S. 1966, A High-Resolution 21-cm Hydrogen-Line Survey of the Andromeda Nebula, ApJ, 144, 639

  Roberts, M. S. 1975, The Rotation Curve of Galaxies, in IAU Symposium, Vol. 69, Dynamics of the Stellar Systems, ed. A. Hayli, 331

  Roberts, M. S. & Rots, A. H. 1973, Comparison of Rotation Curves of Different Galaxy Types, A&A, 26, 483

  Rohlfs, K. & Kreitschmann, J. 1980, A two component mass model for M81/NGC 3031, A&A, 87, 175

  Rohlfs, K. & Kreitschmann, J. 1988, Dynamical mass modelling of the Galaxy, A&A, 201, 51

  Rootsmäe, T. 1961, The problem of stellar evolution in connection with the regularities in their kinematics, Tartu Astr. Obs. Publ., 33, 322

  Rubin, V. C. 1983, The rotation of spiral galaxies, Science, 220, 1339

  Rubin, V. C., Burstein, D., Ford, Jr., W. K., & Thonnard, N. 1985, Rotation velocities of 16 SA galaxies and a comparison of Sa, Sb, and SC rotation properties, ApJ, 289, 81

  Rubin, V. C., Ford, Jr., W. K., & Rubin, J. S. 1973, A Curious Distribution of Radial Velocities of SC i Galaxies with 14.0 < M < 15.0, ApJ, 183, L111

  Rubin, V. C. & Ford, W. K. J. 1970, Rotation of the Andromeda Nebula from a Spectroscopic Survey of Emission Regions, ApJ, 159, 379

  Rubin, V. C., Ford, W. K. J., &. Thonnard, N. 1980, Rotational properties of 21 SC galaxies with a large range of luminosities and radii, from NGC 4605 R = 4kpc to UGC 2885 R = 122 kpc, ApJ, 238, 471

  Rubin, V. C., Roberts, M. S., Graham, J. A., Ford, Jr., W. K., & Thonnard, N. 1976a, Motion of the Galaxy and the local group determined from the velocity anisotropy of distant SC I galaxies. I - The data, AJ, 81, 687

  Rubin, V. C., Thonnard, N., & Ford, Jr., W. K. 1978, Extended rotation curves of high-luminosity spiral galaxies. IV - Systematic dynamical properties, SA through SC, ApJ, 225, L107

  Rubin, V. C., Thonnard, N., Ford, Jr., W. K., & Roberts, M. S. 1976b, Motion of the Galaxy and the local group determined from the velocity anisotropy of distant SC I galaxies. II - The analysis for the motion, AJ, 81, 719

  Ryden, B. S. & Gramann, M. 1991, Phase shifts in gravitationally evolving density fields, ApJ, 383, L33

  Sahni, V., Sathyaprakash, B. S., & Shandarin, S. F. 1998, Shapefinders: A New Shape Diagnostic for Large-Scale Structure, ApJ, 495, L5

  Sales, L. V., Navarro, J. F., Theuns, T., et al. 2012, The origin of discs and spheroids in simulated galaxies, MNRAS, 423, 1544

  Salpeter, E. E. 1955, The Luminosity Function and Stellar Evolution, ApJ, 121, 161

  Salucci, P., Lapi, A., Tonini, C., et al. 2007, The universal rotation curve of spiral galaxies - I- The dark matter distribution out to the virial radius, MNRAS, 378, 41

  Salucci, P., Wilkinson, M. I., Walker, M. G., et al. 2012, Dwarf spheroidal galaxy kinematics and spiral galaxy scaling laws, MNRAS, 420, 2034

  Salvador-Solé, E., Viñas, J., Manrique, A., & Serra, S. 2012, Theoretical dark matter halo density profile, MNRAS, 423, 2190

  Sandage, A. 1961, The Ability of the 200-INCH Telescope to Discriminate Between Selected World Models, ApJ, 133, 355

  Sandage, A. 1972, The redshift-distance relation. II. The Hubble diagram and its scatter for first-ranked cluster galaxies: A formal value for q 0 , ApJ, 178, 1

  Sandage, A. 1978, Optical redshifts for 719 bright galaxies, AJ, 83, 904

  Sandage, A. & Tammann, G. A. 1975, Steps toward the Hubble constant. V - The Hubble constant from nearby galaxies and the regularity of the local velocity field, ApJ, 196, 313

  Sandage, A. & Tammann, G. A. 1976, Steps toward the Hubble constant. VII - Distances to NGC 2403, M101, and the Virgo cluster using 21 centimeter line widths compared with optical methods: The global value of H sub 0, ApJ, 210, 7

  Sandage, A. & Tammann, G. A. 1981, Revised Shapley-Ames Catalog of Bright Galaxies, in Carnegie Inst. of Washington, Publ. 635

  Sandage, A., Tammann, G. A., Saha, A., et al. 2006, The Hubble Constant: A Summary of the Hubble Space Telescope Program for the Luminosity Calibration of Type Ia Supernovae by Means of Cepheids, ApJ, 653, 843

  Sandage, A. R. & Schwarzschild, M. 1952, Inhomogeneous Stellar Models. II. Models with Exhausted Cores in Gravitational Contraction, ApJ, 116, 463

  Sanders, R. H. 2010, The Dark Matter Problem: A Historical Perspective (Cambridge Univ. Press)

  Schechter, P. 1976, An analytic expression for the luminosity function for galaxies, ApJ, 203, 297

  Schmidt, M. 1956, A model of the distribution of mass in the Galactic System, Bull. Astron. Inst. Netherlands, 13, 15

  Schmidt, M. 1959, The Rate of Star Formation, ApJ, 129, 243

  Schwarzschild, M. 1958, Structure and evolution of the stars, ed. Schwarzschild, M. Schwarzschild, M., Rabinowitz, I., & Härm, R. 1953, Inhomogeneous Stellar Models. III. Models with Partially Degenerate Isothermal Cores, ApJ, 118, 326

  Seljak, U. & Zaldarriaga, M. 1996, A Line-of-Sigh
t Integration Approach to Cosmic Microwave Background Anisotropies, ApJ, 469, 437

  Sérsic, J. L. 1963, Influence of the atmospheric and instrumental dispersion on the brightness distribution in a galaxy, Boletin de la Asociacion Argentina de Astronomia La Plata Argentina, 6, 41

  Shandarin, S. F., Sheth, J. V., & Sahni, V. 2004, Morphology of the supercluster-void network in ΛCDM cosmology, MNRAS, 353, 162

  Shandarin, S. F. &Zeldovich, I. B. 1983, Topology of the large-scale structure of the universe, Comments on Astrophysics, 10, 33

  Shane, C. & Wirtanen, C. 1967, The distribution of galaxies, Publ. Lick Obs., 22

  Shapley, H. 1935, A catalogue of 7,889 external galaxies in Horologium and surrounding regions, Annals of Harvard College Observatory, 88, 105

  Shapley, H. 1937, The Distribution of Eighty-Nine Thousand Galaxies Over the South Galactic Cap, Harvard College Observatory Circular, 423, 1

  Shapley, H. 1940, Galactic and Extragalactic Studies, VI. Summary of a Photometric Survey of 35,500 Galaxies in High Southern Latitudes, Proceedings of the National Academy of Science, 26, 166

  Shaver, P. A. 1991, Radio Surveys and Large Scale Structure, Australian Journal of Physics, 44, 759

  Sheth, R. K. & van de Weygaert, R. 2004, A hierarchy of voids: much ado about nothing, MNRAS, 350, 517

  Silk, J. 1974, Does the galaxy possess a gaseous halo, Comments on Astrophysics and Space Physics, 6, 1

  Silk, J. 1982, Fundamental tests of galaxy formation theory, in Astrophysical Cosmology Proceedings, ed. H. A. Brueck, G. V. Coyne, & M. S. Longair, 427

  Sizikov, V. S. 1968, A model of the distribution of mass in M31. I, Astrofizika, 4, 633

  Sizikov, V. S. 1969, A model of the distribution of mass in M31. II, Astrofizika, 5, 317

  Smith, S. 1936, The Mass of the Virgo Cluster, ApJ, 83, 23

  Smoot, G. F., Bennett, C. L., Kogut, A., et al. 1992, Structure in the COBE differential microwave radiometer first-year maps, ApJ, 396, L1

  Soneira, R. M. & Peebles, P. J. E. 1978, A computer model universe — Simulation of the nature of the galaxy distribution in the Lick catalog, AJ, 83, 845

  Spinrad, H. 1966, Normal Galaxies in the Post-Baade ERA, PASP, 78, 367

  Spinrad, H., Greenstein, J. L., Taylor, B. J., & King, I. R. 1970, On the Supermet allicity of the Main-Sequence Stars in M67 and NGC 188, ApJ, 162, 891

  Spinrad, H., Gunn, J. E., Taylor, B. J., McClure, R. D., & Young, J. W. 1971, Color Changes and Absorption-Line Variations Over the Inner Disk of M31 and the Central Regions of M32 and NGC 4472, ApJ, 164, 11

  Spinrad, H. & Taylor, B. J. 1971, Scanner Abundance Studies. III-The Super-Met al Cluster NGC 6791, ApJ, 163, 303

  Spinrad, H., Taylor, B. J., & van den Bergh, S. 1969, The M7 giants in the nuclear bulge of the Galaxy, AJ, 74, 525

  Springel, V., Frenk, C. S., & White, S. D. M. 2006, The large-scale structure of the Universe, Nature, 440, 1137

  Springel, V., Wang, J., Vogelsberger, M., et al. 2008a, The Aquarius Project: the subhaloes of galactic haloes, MNRAS, 391, 1685

  Springel, V., White, S. D. M., Frenk, C. S., et al. 2008b, Prospects for detecting supersymmetric dark matter in the Galactic halo, Nature, 456, 73

  Springel, V., White, S. D. M., Jenkins, A., et al. 2005, Simulations of the formation, evolution and clustering of galaxies and quasars, Nature, 435, 629

  Starobinsky, A. A. 1980, A new type of isotropic cosmological models without singularity, Physics Letters B, 91, 99

  Starobinsky, A. A. 1982, Dynamics of phase transition in the new inflationary universe scenario and generation of perturbations, Physics Letters B, 117, 175

  Starobinsky, A. A. 1985, Multicomponent de Sitter (inflationary) stages and the generation of perturbations, ZhETF Pis ma Redaktsiiu, 42, 124

  Stoica, R. S., Martínez, V. J., & Saar, E. 2010, Filaments in observed and mock galaxy catalogues, A&A, 510, A38

  Strom, R. G. 2012, How was atomic HI (λ = 21 cm line) in space discovered ?, in International Journal of Modern Physics: Conference Series, Vol. 1 (World Scientific), 1

  Strömberg, G. 1924, The Asymmetry in Stellar Motions and the Existence of a Velocity-Restriction in Space, ApJ, 59, 228

  Su, M. & Finkbeiner, D. P. 2012a, Double Gamma-ray Lines from Unassociated Fermi-LAT Sources, ArXiv:1207.7060

  Su, M. & Finkbeiner, D. P. 2012b, Strong Evidence for Gamma-ray Line Emission from the Inner Galaxy, ArXiv:1206.1616

  Suhhonenko, I., Einasto, J., Liivamägi, L. J., et al. 2011, The cosmic web for density perturbations of various scales, A&A, 531, A149+

  Sunyaev, R. A. & Zeldovich, Y. B. 1970, Small-scale fluctuations of relic radiation, Ap&SS, 6, 358

  Szalay, A. S. & Marx, G. 1976, Neutrino rest mass from cosmology, A&A, 49, 437

  Tago, E., Einasto, J., & Saar, E. 1984, Structure of superclusters and superclusters formation. IV Spatial distribution of clusters of galaxies in the Coma supercluster and its large- scale environment, MNRAS, 206, 559

  Tago, E., Einasto, J., & Saar, E. 1986, A prominent string of galaxies in Bootes — Evidence for a Lagrangian singularity?, MNRAS, 218, 177

  Tago, E., Einasto, J., Saar, E., et al. 2006, Clusters and groups of galaxies in the 2dF galaxy redshift survey: A new catalogue, Astronomische Nachrichten, 327, 365

  Tago, E., Einasto, J., Saar, E., et al. 2008, Groups of galaxies in the SDSS Data Release 5. A group-finder and a catalogue, A&A, 479, 927

  Tamm, A., Tempel, E., & Tenjes, P. 2007, Visible and dark matter in M31 — I. Properties of stellar components, ArXiv:0707.4375

  Tamm, A., Tempel, E., Tenjes, P., Tihhonova, O., & Tuvikene, T. 2012, Stellar mass map and dark matter distribution in M 31, A&A, 546, A4

  Tarenghi, M., Tifft, W. G., Chincarini, G., Rood, H. J., & Thompson, L. A. 1978, The Structure of the Hercules Supercluster, in IAU Symposium, Vol. 79, Large Scale Structures in the Universe, eds. M. S. Longair & J. Einasto, 263

  Tempel, E., Einasto, J., Einasto, M., Saar, E., & Tago, E. 2009, Anatomy of luminosity functions: the 2dFGRS example, A&A, 495, 37

  Tempel, E., Hektor, A., & Raidal, M. 2012a, Addendum: Fermi 130 GeV gamma-ray excess and dark matter annihilation in sub-haloes and in the Galactic centre Addendum: Fermi 130 GeV gamma-ray excess and dark matter annihilation in sub-haloes and in the Galactic centre, J. Cosmology Astropart. Phys., 11, 0

  Tempel, E., Hektor, A., & Raidal, M. 2012b, Fermi 130 GeV gamma-ray excess and dark matter annihilation in sub-haloes and in the Galactic centre, J. Cosmology Astropart. Phys., 9, 32

  Tempel, E., Saar, E., Liivamägi, L. J., et al. 2011, Galaxy morphology, luminosity, and environment in the SDSS DR7, A&A, 529, A53

  Tempel, E., Stoica, R. S., & Saar, E. 2013, Evidence for spin alignment of spiral and elliptical/S0 galaxies in filaments, MNRAS, 428, 1827

  Tempel, E., Tago, E., & Liivamägi, L. J. 2012c, Groups and clusters of galaxies in the SDSS DR8. Value-added catalogues, A&A, 540, A106

  Tempel, E., Tamm, A., Kipper, R., & Tenjes, P. 2012d, Uncertainties in SDSS galaxy parameter determination: 3D photometrical modelling of test galaxies and restoration of their structural parameters, ArXiv:1205.6319

  Tempel, E., Tamm, A., & Tenjes, P. 2007, Visible and dark matter in M 31 - II. A dynamical model and dark matter density distribution, ArXiv:0707.4374

  Tenjes, P., Einasto, J., & Haud, U. 1991, Galactic models with massive coronae. III - Giant elliptical galaxy M 87, A&A, 248, 395

  Tenjes, P., Haud, U., & Einasto, J. 1994, Galactic models with massive coronae IV-The Andromeda galaxy, M 31, A&A, 286, 753

  Tenjes, P., Haud, U., & Einasto, J. 1998, Galactic models with massive coronae. V-The spiral SAB galaxy M 81, A&A, 335, 449

  Thompson, L. A. & Gregory, S. A. 2011, An Historical View: The Discovery of Voids in the Galaxy Distribution, ArXiv:1109.1268

  Tifft, W. G. & Gregory, S. A. 1978, Observations of the Large Scale Distribution of Galaxies, in IAU Symposium, Vol. 79, Large Scale Structures in the Universe, eds. M.S. Longair & J. Einasto, 267

  Tiit
, E. & Einasto, J. 1964, Factor Analysis of Red Dwarfs, Tartu Astr. Obs. Publ., 34, 156

  Tinsley, B. M. 1968, Evolution of the Stars and Gas in Galaxies, ApJ, 151, 547

  Tinsley, B. M. & Spinrad, H. 1971, Evolution of the M31 Disk Population, Ap&SS, 12, 118

  Toomre, A. 1964, On the gravitational stability of a disk of stars, ApJ, 139, 1217

  Toomre, A. 1977, Mergers and Some Consequences, in Evolution of Galaxies and Stellar Populations, ed. B. M. Tinsley & R. B. G. Larson, D. Campbell, 401

  Toomre, A. & Toomre, J. 1972, Galactic Bridges and Tails, ApJ, 178, 623

  Trachternach, C., de Blok, W. J. G., Walter, F., Brinks, E., & Kennicutt, Jr., R. C. 2008, Dynamical Centers and Noncircular Motions in THINGS Galaxies: Implications for Dark Matter Halos, AJ, 136, 2720

  Tremaine, S. 1987, A Historical Perspective on Dark Matter, in IAU Symposium, Vol. 117, Dark matter in the universe, ed. J. Kormendy & G. R. Knapp, 547

  Trimble, V. 1987, Existence and nature of dark matter in the universe, ARA&A, 25, 425

  Trimble, V. 1988a, Dark matter in the universe: where, what, and why? Contemporary Physics, 29, 373

  Trimble, V. 1988b, Existence and Nature of Dark Matter in the Universe, ed. E. W. Kolb & M. S. Turner, 67

  Trimble, V. 1988c, The search for dark matter, Astronomy, 16, 18

  Trimble, V. 1990, History of dark matter in the universe (1922–1974), ed. B. Bertotti, R. Balbinot, & S. Bergia, 355

  Trimble, V. 1995, The World Line of Dark Matter: Its Existence and Nature Through Time, in Sources of Dark Matter in the Universe, ed. D. B. Cline, 9

  Trimble, V. 2008, BOOK REVIEW: Universe or Multiverse? Classical and Quantum Gravity, 25, 229001

  Trimble, V. 2010, History of Dark Matter in Galaxies, in Planets, Stars and Stellar Systems, Vol. 5, Planets, Stars and Stellar Systems, ed. G. Gilmore (Springer)

  Tully, R. B. & Fisher, J. R. 1978, A Tour of the Local Supercluster, in IAU Symposium, Vol. 79, Large Scale Structures in the Universe, eds. M. S. Longair & J. Einasto, 214

  Tully, R. B. & Fisher, J. R. 1987, Atlas of Nearby Galaxies

  Tully, R. B., Shaya, E. J., Karachentsev, I. D., et al. 2008, Our Peculiar Motion Away from the Local Void, ApJ, 676, 184

 

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