Search Results - stellar designation

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  1. 1

    Excavating the fossil record of spiral galaxies by Peterken, Thomas

    Published 2020
    “…However, the spatial variation in the properties of stellar populations contained within spiral galaxies are expected to bear the imprint of some of the past and present physical processes driving global and local structure and dynamics. …”
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    SDSS-IV MaNGA IFS galaxy survey—survey design, execution, and initial data quality by Yan, Renbin, Bundy, Kevin, Law, David R., Bershady, Matthew A., Andrews, Brett, Cherinka, Brian, Diamond-Stanic, Aleksandar M., Drory, Niv, MacDonald, Nicholas, Sánchez-Gallego, José R., Thomas, Daniel, Wake, David A., Weijmans, Anne-Marie, Westfall, Kyle B., Zhang, Kai, Aragón-Salamanca, Alfonso, Belfiore, Francesco, Bizyaev, Dmitry, Blanc, Guillermo A., Blanton, Michael R., Brownstein, Joel, Cappellari, Michele, D’Souza, Richard, Emsellem, Eric, Fu, Hai, Gaulme, Patrick, Graham, Mark T., Goddard, Daniel, Gunn, James E., Harding, Paul, Jones, Amy, Kinemuchi, Karen, Li, Cheng, Li, Hongyu, Maiolino, Roberto, Mao, Shude, Maraston, Claudia, Masters, Karen, Merrifield, Michael R., Oravetz, Daniel, Pan, Kaike, Parejko, John K., Sanchez, Sebastian F., Schlegel, David, Simmons, Audrey, Thanjavur, Karun, Tinker, Jeremy, Tremonti, Christy, van den Bosch, Remco, Zheng, Zheng

    Published 2016
    “…It is obtaining integral field spectroscopy for 10,000 nearby galaxies at a spectral resolution of R ∼ 2000 from 3622 to 10354 Å. The design of the survey is driven by a set of science requirements on the precision of estimates of the following properties: star formation rate surface density, gas metallicity, stellar population age, metallicity, and abundance ratio, and their gradients; stellar and gas kinematics; and enclosed gravitational mass as a function of radius. …”
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    The ULX NGC 1313 X-2: An optical study revealing an interesting behavior by Grisé, F., Pakull, M., Soria, Roberto, Motch, C.

    Published 2009
    “…Here, we report on the properties of the stellar environment, and the differences in the optical counterpart between our two observing epochs (2003-2004 and 2007-2008). …”
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  5. 5

    Star formation and quenching in galaxy formation models by Asquith, Rachel

    Published 2019
    “…We then look at the haloes these galaxies are in, and find that the average stellar mass in low-mass haloes at high redshift in the models is larger than observations suggest. …”
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    Wireless Portable Charger 3 in 1 / Nuramirah Ainaa Jamil by Jamil, Nuramirah Ainaa

    Published 2020
    “…The objective of our company is to produce stellar products, design and services that are suitable at a cost that represent the possible value to our customers. …”
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    The Australia Telescope Large Area Survey: Spectroscopic catalogue and radio luminosity functions by Mao, M., Sharp, R., Norris, R., Hopkins, A., Seymour, Nick, Lovell, J., Middelberg, E., Randall, K., Sadler, E., Saikia, D., Shabala, S., Zinn, P.

    Published 2012
    “…Of the 466 radio sources with new spectroscopic redshifts, 142 have star-forming optical spectra, 282 show evidence for active galactic nuclei (AGN) in their optical spectra, 10 have stellar spectra and 32 have spectra revealing redshifts, but with insufficient features to classify. …”
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  11. 11

    Overview of the SDSS-IV MaNGA survey: mapping nearby galaxies at Apache Point Observatory by Bundy, Kevin, Bershady, Matthew A., Law, David R., Yan, Renbin, Drory, Niv, MacDonald, Nicholas, Wake, David A., Cherinka, Brian, Sánchez-Gallego, José R., Weijmans, Anne-Marie, Thomas, Daniel, Tremonti, Christy, Masters, Karen, Coccato, Lodovico, Diamond-Stanic, Aleksandar M., Aragón-Salamanca, Alfonso, Avila-Reese, Vladimir, Badenes, Carles, Falcón-Barroso, Jésus, Belfiore, Francesco, Bizyaev, Dmitry, Blanc, Guillermo A., Bland-Hawthorn, Joss, Blanton, Michael R., Brownstein, Joel R., Byler, Nell, Cappellari, Michele, Conroy, Charlie, Dutton, Aaron A., Emsellem, Eric, Etherington, James, Frinchaboy, Peter M., Fu, Hai, Gunn, James E., Harding, Paul, Johnston, Evelyn J., Kauffmann, Guinevere, Kinemuchi, Karen, Klaene, Mark A., Knapen, Johan H., Leauthaud, Alexie, Li, Cheng, Lin, Lihwai, Maiolino, Roberto, Malanushenko, Viktor, Malanushenko, Elena, Mao, Shude, Maraston, Claudia, McDermid, Richard M., Merrifield, Michael R., Nichol, Robert C., Oravetz, Daniel, Pan, Kaike, Parejko, John K., Sanchez, Sebastian F., Schlegel, David, Simmons, Audrey, Steele, Oliver, Steinmetz, Matthias, Thanjavur, Karun, Thompson, Benjamin A., Tinker, Jeremy L., van den Bosch, Remco C. E., Westfall, Kyle B., Wilkinson, David, Wright, Shelley, Xiao, Ting, Zhang, Kai

    Published 2014
    “…We summarize essential characteristics of the instrument and survey design in the context of MaNGA's key science goals and present prototype observations to demonstrate MaNGA's scientific potential. …”
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    The MeerKAT international GHz tiered extragalactic exploration (MIGHTEE) survey by Jarvis, M., Taylor, A., Agudo, I., Allison, J., Deane, R., Frank, B., Gupta, N., Heywood, I., Maddox, N., McAlpine, K., Santos, M., Scaife, A., Vaccari, M., Zwart, J., Adams, E., Bacon, D., Baker, A., Bassett, B., Best, P., Beswick, R., Blyth, S., Brown, M., Brüggen, M., Cluver, M., Colafranceso, S., Cotter, G., Cress, C., Davé, R., Ferrari, C., Hardcastle, M., Hale, C., Harrison, I., Hatfield, P., Klöckner, H., Kolwa, S., Malefahlo, E., Marubini, T., Mauch, T., Moodley, K., Morganti, R., Norris, R., Peters, J., Prandoni, I., Prescott, M., Oliver, S., Oozeer, N., Röttgering, H., Seymour, Nick, Simpson, C., Smirnov, O., Smith, D., Spekkens, K., Stil, J., Tasse, C., van der Heyden, K., Whittam, I., WIlliams, W.

    Published 2016
    “…Specifically, MIGHTEE is designed to significantly enhance our understanding of, (i) the evolution of AGN and star-formation activity over cosmic time, as a function of stellar mass and environment, free of dust obscuration; (ii) the evolution of neutral hydrogen in the Universe and how this neutral gas eventually turns into stars after moving through the molecular phase, and how efficiently this can fuel AGN activity; (iii) the properties of cosmic magnetic fields and how they evolve in clusters, filaments and galaxies. …”
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  14. 14

    The MeerKAT international GHz tiered extragalactic exploration (MIGHTEE) survey by Jarvis, M., Taylor, A., Agudo, I., Allison, J., Deane, R., Frank, B., Gupta, N., Heywood, I., Maddox, N., McAlpine, K., Santos, M., Scaife, A., Vaccari, M., Zwart, J., Adams, E., Bacon, D., Baker, A., Bassett, B., Best, P., Beswick, R., Blyth, S., Brown, M., Brüggen, M., Cluver, M., Colafranceso, S., Cotter, G., Cress, C., Davé, R., Ferrari, C., Hardcastle, M., Hale, C., Harrison, I., Hatfield, P., Klöckner, H., Kolwa, S., Malefahlo, E., Marubini, T., Mauch, T., Moodley, K., Morganti, R., Norris, R., Peters, J., Prandoni, I., Prescott, M., Oliver, S., Oozeer, N., Röttgering, H., Seymour, Nick, Simpson, C., Smirnov, O., Smith, D., Spekkens, K., Stil, J., Tasse, C., van der Heyden, K., Whittam, I., WIlliams, W.

    Published 2016
    “…Specifically, MIGHTEE is designed to significantly enhance our understanding of, (i) the evolution of AGN and star-formation activity over cosmic time, as a function of stellar mass and environment, free of dust obscuration; (ii) the evolution of neutral hydrogen in the Universe and how this neutral gas eventually turns into stars after moving through the molecular phase, and how efficiently this can fuel AGN activity; (iii) the properties of cosmic magnetic fields and how they evolve in clusters, filaments and galaxies. …”
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    The taipan galaxy survey: Scientific goals and observing strategy by Da Cunha, E., Hopkins, A., Colless, M., Taylor, E., Blake, C., Howlett, C., Magoulas, C., Lucey, J., Lagos, C., Kuehn, K., Gordon, Y., Barat, D., Bian, F., Wolf, C., Cowley, M., White, M., Achitouv, I., Bilicki, M., Bland-Hawthorn, J., Bolejko, K., Brown, M., Brown, R., Bryant, J., Croom, S., Davis, T., Driver, S., Filipovic, M., Hinton, S., Johnston-Hollitt, Melanie, Jones, D., Koribalski, B., Kleiner, D., Lawrence, J., Lorente, N., Mould, J., Owers, M., Pimbblet, K., Tinney, C., Tothill, N., Watson, F.

    Published 2017
    “…The Taipan survey is deliberately designed to maximise its legacy value by complementing and enhancing current and planned surveys of the southern sky at wavelengths from the optical to the radio; it will become the primary redshift and optical spectroscopic reference catalogue for the local extragalactic Universe in the southern sky for the coming decade.…”
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  17. 17

    The VANDELS ESO public spectroscopic survey by McLure, R.J., Pentericci, L., Cimatti, A., Dunlop, J.S., Elbaz, D., Fontana, A., Nandra, K., Amorin, R., Bolzonella, M., Bongiorno, A., Carnall, A.C., Castellano, M., Cirasuolo, M., Cucciati, O., Cullen, F., De Barros, S., Finkelstein, S.L., Fontanot, F., Franzetti, P., Fumana, M., Gargiulo, A., Garilli, B., Guaita, L., Hartley, W.G., Iovino, A., Jarvis, M.J., Juneau, S., Karman, W., Maccagni, D., Marchi, F., Mármol-Queraltó, E., Pompei, E., Pozzetti, L., Scodeggio, M., Sommariva, V., Talia, M., Almaini, O., Balestra, I., Bardelli, S., Bell, E.F., Bourne, N., Bowler, R.A.A., Brusa, M., Buitrago, F., Caputi, K.I., Cassata, P., Charlot, S., Citro, A., Cresci, G., Cristiani, S., Curtis-Lake, E., Dickinson, M., Fazio, G.G., Ferguson, H.C., Fiore, F., Franco, M., Fynbo, J P U, Galametz, A., Georgakakis, A., Giavalisco, M., Grazian, A., Hathi, N.P., Jung, I., Kim, S., Koekemoer, A.M., Khusanova, Y., Le Fèvre, O., Lotz, J.M., Mannucci, F., Maltby, D.T., Matsuoka, K., McLeod, D.J., Mendez-Hernandez, H., Mendez-Abreu, J., Mignoli, M., Moresco, M., Mortlock, A., Nonino, M., Pannella, M., Papovich, C., Popesso, P., Rosario, D.P., Salvato, M., Santini, P., Schaerer, D., Schreiber, C., Stark, D.P., Tasca, L.A.M., Thomas, R., Treu, T., Vanzella, E., Wild, V., Williams, C.C., Zamorani, G., Zucca, E.

    Published 2018
    “…In this paper, we provide an overview of the VANDELS survey designed to support the science exploitation of the first ESO public data release, focusing on the scientific motivation, survey design, and target selection.…”
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