SSA 22 , the SIMBAD biblio

SSA 22 , the SIMBAD biblio (281 results) C.D.S. - SIMBAD4 rel 1.7 - 2021.06.13CEST14:21:37

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Title First 3 Authors
2021A&A...647A.107B 50           X         1 6 ~ The MUSE Extremely Deep Field: The cosmic web in emission at high redshift. BACON R., MARY D., GAREL T., et al.
2021ApJ...907....3L 200           X         4 9 ~ Statistical correlation between the distribution of Lyα emitters and intergalactic medium H I at z ∼ 2.2 mapped by the Subaru/Hyper Suprime-Cam. LIANG Y., KASHIKAWA N., CAI Z., et al.
2021ApJ...908..222J 50           X         1 9 ~ Candidate z ∼ 2.5 Lyman continuum sources in the GOODS fields. JONES L.H., BARGER A.J. and COWIE L.L.
2021ApJ...909..117M 100           X         2 2 ~ Environmental dependence of galactic properties traced by Lyα forest absorption: diversity among galaxy populations. MOMOSE R., SHIMASAKU K., KASHIKAWA N., et al.
2021ApJ...911...78O 100             C       1 6 ~ SILVERRUSH X: machine learning-aided selection of 9318 LAEs at z = 2.2, 3.3, 4.9, 5.7, 6.6, and 7.0 from the HSC SSP and CHORUS survey data. ONO Y., ITOH R., SHIBUYA T., et al.
2021ApJ...911...99F 100             C       1 5 ~ ALMA Lensing Cluster Survey: bright [C II] 158 µm lines from a multiply imaged sub-L* galaxy at z = 6.0719. FUJIMOTO S., OGURI M., BRAMMER G., et al.
2021MNRAS.500.4229G 50           X         1 3 ~ The evolution of gas-phase metallicity and resolved abundances in star-forming galaxies at z ≃ 0.6-1.8. GILLMAN S., TILEY A.L., SWINBANK A.M., et al.
2021MNRAS.500.4354Z 100           X         2 5 ~ MAMMOTH: confirmation of two massive galaxy overdensities at z = 2.24 with Hα emitters. ZHENG X.Z., CAI Z., AN F.X., et al.
2021MNRAS.501.1803L 300           X C       5 18 ~ Is there enough star formation in simulated protoclusters? LIM S., SCOTT D., BABUL A., et al.
2021MNRAS.502..772L 50           X         1 6 ~ Reproducing submillimetre galaxy number counts with cosmological hydrodynamic simulations. LOVELL C.C., GEACH J.E., DAVE R., et al.
2021MNRAS.502.1797R 100           X         2 13 ~ Optical and near-infrared observations of the SPT2349-56 proto-cluster core at z = 4.3. ROTERMUND K.M., CHAPMAN S.C., PHADKE K.A., et al.
2021MNRAS.502.3426S 50           X         1 5 ~ An ALMA survey of the S2CLS UDS field: optically invisible submillimetre galaxies. SMAIL I., DUDZEVICIUTE U., STACH S.M., et al.
2020A&A...637A..52N viz 47           X         1 5 ~ The deep Chandra survey in the SDSS J1030+0524 field. NANNI R., GILLI R., VIGNALI C., et al.
2020A&A...640L...8U 187 T         X         3 7 ~ ALMA Deep Field in
SSA22. A near-infrared-dark submillimeter galaxy at z = 4.0.
2020ApJ...889..161N 93           X         2 7 ~ The LymAn Continuum Escape Survey. II. Ionizing radiation as a function of the [O III]/[O II] line ratio. NAKAJIMA K., ELLIS R.S., ROBERTSON B.E., et al.
2020ApJ...891..105W 65       D     X         2 7 ~ Diffuse Lyα halos around 300 spectroscopically confirmed Lyα emitters at z ∼ 5.7. WU J., JIANG L. and NING Y.
2020ApJ...897...41S 47           X         1 14 ~ The Lyman continuum escape fraction of galaxies and AGN in the GOODS fields. SMITH B.M., WINDHORST R.A., COHEN S.H., et al.
2020ApJ...897...91G 47           X         1 5 ~ The ALMA Spectroscopic Survey in the HUDF: Deep 1.2 mm continuum number counts. GONZALEZ-LOPEZ J., NOVAK M., DECARLI R., et al.
2020ApJ...899...64A 47           X         1 16 ~ Environmental impact on star-forming galaxies in a z ∼ 0.9 cluster during the course of galaxy accretion. ASANO T., KODAMA T., MOTOHARA K., et al.
2020ApJ...902..110D 47           X         1 7 ~ The ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: multiband constraints on line-luminosity functions and the cosmic density of molecular gas. DECARLI R., ARAVENA M., BOOGAARD L., et al.
2020ApJ...903....4N 140           X         3 4 ~ The Magellan M2FS spectroscopic survey of high-redshift galaxies: a sample of 260 Lyα emitters at redshift z ≃ 5.7. NING Y., JIANG L., ZHENG Z.-Y., et al.
2020MNRAS.492.3194S 47           X         1 13 ~ KASHz: No evidence for ionised outflows instantaneously suppressing star formation in moderate luminosity AGN at z ∼ 1.4-2.6. SCHOLTZ J., HARRISON C.M., ROSARIO D.J., et al.
2020MNRAS.496.4358I 93             C       1 27 ~ ALMA unveils wider environment of distant red protocluster core. IVISON R.J., BIGGS A.D., BREMER M., et al.
2020NatAs...4..670A 187           X         4 6 ~ Infalling gas in a Lyman-α blob. AO Y., ZHENG Z., HENKEL C., et al.
2019A&A...623A..48C 45           X         1 19 ~ Molecular gas in radio galaxies in dense megaparsec-scale environments at z = 0.4-2.6. CASTIGNANI G., COMBES F., SALOME P., et al.
2019A&A...625A..96K 134           X         3 29 ~ Using ALMA to resolve the nature of the early star-forming large-scale structure PLCK G073.4-57.5. KNEISSL R., DEL CARMEN POLLETTA M., MARTINACHE C., et al.
2019ApJ...874...54M viz 242       D     X C       5 9 ~ The fraction of active galactic nuclei in the USS 1558-003 Protocluster at z = 2.53. MACUGA M., MARTINI P., MILLER E.D., et al.
2019ApJ...875..130L 45           X         1 9 ~ Discovery of a Lyα-emitting dark cloud within the z ∼ 2.8 SMM J02399-0136 system. LI Q., CAI Z., PROCHASKA J.X., et al.
2019MNRAS.482.2166T 90           X         2 2 ~ KROSS-SAMI: a direct IFS comparison of the Tully-Fisher relation across 8 Gyr since z ≃ 1. TILEY A.L., BUREAU M., CORTESE L., et al.
2019MNRAS.484.5868H 1434 T   A D     X C F     30 3 ~ Enhancement of H I absorption associated with the z = 3.1 large-scale proto-cluster and characteristic structures with AGNs sculptured over Gpc scale in the
SSA22 field.
2019MNRAS.486..175G 179           X         4 4 ~ The dynamics and distribution of angular momentum in HiZELS star-forming galaxies at z = 0.8-3.3. GILLMAN S., SWINBANK A.M., TILEY A.L., et al.
2019MNRAS.487..381S 45           X         1 4 ~ The energetics of starburst-driven outflows at z ∼ 1 from KMOS. SWINBANK A.M., HARRISON C.M., TILEY A.L., et al.
2019MNRAS.488.1790L 90           X         2 14 ~ Two sub-millimetre bright protoclusters bounding the epoch of peak star-formation activity. LACAILLE K.M., CHAPMAN S.C., SMAIL I., et al.
2019MNRAS.488.5671I 2598     A D S   X C       57 24 ~ Subaru narrow-band imaging search for Lyman continuum from galaxies at z > 3 in the GOODS-N field. IWATA I., INOUE A.K., MICHEVA G., et al.
2019MNRAS.489..555K 788     A S   X C       16 7 ~ The clustering of typical Ly α emitters from z ∼ 2.5-6: host halo masses depend on Ly α and UV luminosities. KHOSTOVAN A.A., SOBRAL D., MOBASHER B., et al.
2019MNRAS.490.3840C 45           X         1 7 ~ SCUBA-2 observations of candidate starbursting protoclusters selected by Planck and Herschel-SPIRE. CHENG T., CLEMENTS D.L., GREENSLADE J., et al.
2018A&A...613A..44G 44           X         1 33 4 The contribution of faint AGNs to the ionizing background at z ∼ 4. GRAZIAN A., GIALLONGO E., BOUTSIA K., et al.
2018A&A...614A..11M 45           X         1 4 4 Lyα-Lyman continuum connection in 3.5 <= z <= 4.3 star-forming galaxies from the VUDS survey. MARCHI F., PENTERICCI L., GUAITA L., et al.
2018ApJ...869..123S viz 87             C       1 128 ~ The Keck Lyman Continuum Spectroscopic survey (KLCS): the emergent ionizing spectrum of galaxies at z ∼ 3. STEIDEL C.C., BOGOSAVLJEVIC M., SHAPLEY A.E., et al.
2018MNRAS.474.4612L 61       D     X         2 33 4 Characterising and identifying galaxy protoclusters. LOVELL C.C., THOMAS P.A. and WILKINS S.M.
2018MNRAS.475.3730C 237       D     X   F     5 2 4 The dependence of galaxy clustering on stellar mass, star-formation rate and redshift at z = 0.8-2.2, with HiZELS. COCHRANE R.K., BEST P.N., SOBRAL D., et al.
2018MNRAS.477.2042H 1106       D     X C       25 71 9 High-resolution SMA imaging of bright submillimetre sources from the SCUBA-2 Cosmology Legacy Survey. HILL R., CHAPMAN S.C., SCOTT D., et al.
2018MNRAS.477.2098N 627       D     X         15 16 8 The mean ultraviolet spectrum of a representative sample of faint z ∼ 3 Lyman alpha emitters. NAKAJIMA K., FLETCHER T., ELLIS R.S., et al.
2018MNRAS.477.2817S 44           X         1 15 14 The nature of luminous Ly α emitters at z ∼ 2-3: maximal dust-poor starbursts and highly ionizing AGN. SOBRAL D., MATTHEE J., DARVISH B., et al.
2018MNRAS.480.1022Y 218           X         5 5 ~ Does black-hole growth depend on the cosmic environment? YANG G., BRANDT W.N., DARVISH B., et al.
2018PASJ...70...65U 679 T   A     X C       14 66 ~ ALMA deep field in
SSA22: Survey design and source catalog of a 20 arcmin2 survey at 1.1 mm.
2018PASJ...70..105H 44           X         1 10 ~ ALMA twenty-six arcmin2 survey of GOODS-S at one millimeter (ASAGAO): Source catalog and number counts. HATSUKADE B., KOHNO K., YAMAGUCHI Y., et al.
2018PASJ...70L...6K 174           X C       3 6 ~ A high dust emissivity index β for a CO-faint galaxy in a filamentary Lyα nebula at z = 3.1 . KATO Y., MATSUDA Y., IONO D., et al.
2017A&A...597A...4S 17       D               1 46 10 (Sub)millimetre interferometric imaging of a sample of COSMOS/AzTEC submillimetre galaxies. III. Environments. SMOLCIC V., MIETTINEN O., TOMICIC N., et al.
2017A&A...601A..73M 43           X         1 39 10 New constraints on the average escape fraction of Lyman continuum radiation in z ∼ 4 galaxies from the VIMOS Ultra Deep Survey (VUDS). MARCHI F., PENTERICCI L., GUAITA L., et al.
2017A&A...602A..18G 43           X         1 42 18 Lyman continuum escape fraction of faint galaxies at z ∼ 3.3 in the CANDELS/GOODS-North, EGS, and COSMOS fields with LBC. GRAZIAN A., GIALLONGO E., PARIS D., et al.
2017A&A...604A..23N 43           X         1 10 7 MUSE-inspired view of the quasar Q2059-360, its Lyman α blob, and its neighborhood. NORTH P.L., MARINO R.A., GORGONI C., et al.
2017A&A...605A.127P 43           X         1 31 2 Galaxy kinematics in the XMMU J2235-2557 cluster field at z ∼ 1.4. PEREZ-MARTINEZ J.M., ZIEGLER B., VERDUGO M., et al.
2017ApJ...835...98U 664 T   A     X C       14 52 17 ALMA deep field in
SSA22: source catalog and number counts.
2017ApJ...837...11B 44           X         1 11 18 A high space density of luminous Lyman alpha emitters at z ∼ 6.5. BAGLEY M.B., SCARLATA C., HENRY A., et al.
2017ApJ...837...71C 88           X         2 9 29 Discovery of an enormous Lyα nebula in a massive galaxy overdensity at z = 2.3. CAI Z., FAN X., YANG Y., et al.
2017ApJ...837..172X 172           X         4 6 14 The diversity of diffuse Lyα nebulae around star-forming galaxies at high redshift. XUE R., LEE K.-S., DEY A., et al.
2017ApJ...845..172B viz 400       D     X C       9 15 4 Discovery of a protocluster associated with a Lyα blob pair at z = 2.3. BADESCU T., YANG Y., BERTOLDI F., et al.
2017ApJ...846..134J 358       D S   X C       7 40 2 A Magellan M2FS spectroscopic survey of galaxies at 5.5 < z < 6.8: program overview and a sample of the brightest Lyα emitters. JIANG L., SHEN Y., BIAN F., et al.
2017ApJ...850..178A 1132 T   A     X C       25 45 4 Deep submillimeter and radio observations in the
SSA22 field. I. Powering sources and the Lyα escape fraction of Lyα blobs.
AO Y., MATSUDA Y., HENKEL C., et al.
2017MNRAS.464.1380W 89           X         2 5 23 The SCUBA-2 Cosmology Legacy Survey: the clustering of submillimetre galaxies in the UKIDSS UDS field. WILKINSON A., ALMAINI O., CHEN C.-C., et al.
2017MNRAS.465..302M viz 451 T   A     X C       9 18 16 Lyman continuum leaking AGN in the
SSA22 field.
2017MNRAS.465..316M viz 383 T   A D     X         9 34 17 Searching for candidates of Lyman continuum sources - revisiting the
SSA22 field.
2017MNRAS.465.1789G viz 178     A D     X         5 9 73 The SCUBA-2 Cosmology Legacy Survey: 850 µm maps, catalogues and number counts. GEACH J.E., DUNLOP J.S., HALPERN M., et al.
2017MNRAS.465.2717P 45           X         1 5 13 The structural and size evolution of star-forming galaxies over the last 11 Gyr. PAULINO-AFONSO A., SOBRAL D., BUITRAGO F., et al.
2017MNRAS.466..892M 44           X         1 13 16 SINFONI-HiZELS: the dynamics, merger rates and metallicity gradients of 'typical' star-forming galaxies at z = 0.8-2.2. MOLINA J., IBAR E., SWINBANK A.M., et al.
2017MNRAS.467.1965H viz 267           X         6 2 24 The KMOS Redshift One Spectroscopic Survey (KROSS): rotational velocities and angular momentum of z ~= 0.9 galaxies. HARRISON C.M., JOHNSON H.L., SWINBANK A.M., et al.
2017MNRAS.467.3140S viz 24       D               2 3 23 Angular momentum evolution of galaxies over the past 10 Gyr: a MUSE and KMOS dynamical survey of 400 star-forming galaxies from z = 0.3 to 1.7. SWINBANK A.M., HARRISON C.M., TRAYFORD J., et al.
2017MNRAS.467.3951M 3490     A D S   X C F     80 8 2 Imaging of diffuse H I absorption structure in the
SSA22 protocluster region at z = 3.1.
2017MNRAS.469.2235K 281     A     X         7 20 2 Bimodal morphologies of massive galaxies at the core of a protocluster at z = 3.09 and the strong size growth of a brightest cluster galaxy. KUBO M., YAMADA T., ICHIKAWA T., et al.
2017MNRAS.471.1280T 469       S   X         10 13 17 The KMOS Deep Survey (KDS) - I. Dynamical measurements of typical star-forming galaxies at z ~= 3.5. TURNER O.J., CIRASUOLO M., HARRISON C.M., et al.
2017MNRAS.472..772M viz 494     A     X C       11 48 21 Spectroscopic properties of luminous Ly α emitters at z ~= 6-7 and comparison to the Lyman-break population. MATTHEE J., SOBRAL D., DARVISH B., et al.
2017PASJ...69...45H 256 T         X C       4 7 10 ALMA deep field in
SSA22: Blindly detected CO emitters and [C II ] emitter candidates.
2016A&A...585A..48G 209           X         5 51 47 The Lyman continuum escape fraction of galaxies at z = 3.3 in the VUDS-LBC/COSMOS field. GRAZIAN A., GIALLONGO E., GERBASI R., et al.
2016A&A...587A..73B 43           X         1 21 26 Measures of galaxy dust and gas mass with Herschel photometry and prospects for ALMA. BERTA S., LUTZ D., GENZEL R., et al.
2016A&A...595A.100C 43           X         1 12 20 Discovery of a faint, star-forming, multiply lensed, Lyman-α blob. CAMINHA G.B., KARMAN W., ROSATI P., et al.
2016A&ARv..24...14O 43           X         1 19 36 The realm of the galaxy protoclusters. OVERZIER R.A.
2016ARA&A..54..761S 44           X         1 19 53 Galaxies in the first billion years after the Big Bang. STARK D.P.
2016ApJ...817..161M 198 T K A     X         4 1 6 Discovery of a damped Lyα absorber at z = 3.3 along a galaxy sight-line in the
SSA22 field.
2016ApJ...821L..10K 276     A     X         7 10 5 Discovery of a supercluster at z ∼ 0.91 and testing the ΛCDM cosmological model. KIM J.-W., IM M., LEE S.-K., et al.
2016ApJ...823...20K 103       D     X C   *   18 12 41 Bright and faint ends of Lyα luminosity functions at z = 2 determined by the Subaru survey: implications for AGNs, magnification bias, and ISM H I evolution. KONNO A., OUCHI M., NAKAJIMA K., et al.
2016ApJ...824...36C 685       D S   X C       15 37 23 The ubiquity of coeval starbursts in massive galaxy cluster progenitors. CASEY C.M.
2016ApJ...824L..11T 1489   K A S   X C       34 4 7 Substructure within the
SSA22 protocluster at z[?]3.09.
2016ApJ...825L...7H 43           X         1 10 17 An ultraluminous Lyα emitter with a blue wing at z = 6.6. HU E.M., COWIE L.L., SONGAILA A., et al.
2016ApJ...826..114T viz 42           X         1 152 12 A systematic survey of protoclusters at z ∼ 3-6 in the CFHTLS deep fields. TOSHIKAWA J., KASHIKAWA N., OVERZIER R., et al.
2016ApJ...828L..21K 85           X         2 12 15 A resolved map of the infrared excess in a Lyman break galaxy at z = 3. KOPROWSKI M.P., COPPIN K.E.K., GEACH J.E., et al.
2016ApJ...829...53V 43           X         1 8 11 A giant Lyα nebula in the core of an X-ray cluster at z = 1.99: implications for early energy injection. VALENTINO F., DADDI E., FINOGUENOV A., et al.
2016ApJ...831L...9N 133           X C       2 4 33 A hard ionizing spectrum in z = 3-4 Lyα emitters with intense [O III] emission: analogs of galaxies in the reionization era? NAKAJIMA K., ELLIS R.S., IWATA I., et al.
2016ApJ...832...37G 1046           X         25 8 15 ALMA observations of Lyα Blob 1: halo substructure illuminated from within. GEACH J.E., NARAYANAN D., MATSUDA Y., et al.
2016ApJ...833...12R 44           X         1 18 40 VLA and ALMA imaging of intense galaxy-wide star formation in z ∼ 2 galaxies. RUJOPAKARN W., DUNLOP J.S., RIEKE G.H., et al.
2016ApJS..226...23Z 587           X C       13 7 14 Lyα emitter galaxies at z∼ 2.8 in the Extended Chandra Deep Field South. I. Tracing the large-scale structure via Lyα imaging. ZHENG Z.-Y., MALHOTRA S., RHOADS J.E., et al.
2016MNRAS.455.3333K 711 T   A D     X   F     16 25 15 An extremely dense group of massive galaxies at the centre of the protocluster at z = 3.09 in the
SSA22 field.
2016MNRAS.456.1195H viz 293           X C       6 91 39 The KMOS AGN Survey at High redshift (KASHz): the prevalence and drivers of ionized outflows in the host galaxies of X-ray AGN. HARRISON C.M., ALEXANDER D.M., MULLANEY J.R., et al.
2016MNRAS.456.4533M 214           X         5 3 16 KROSS: mapping the Hα emission across the star formation sequence at z ∼ 1. MAGDIS G.E., BUREAU M., STOTT J.P., et al.
2016MNRAS.457.1739S 435       D     X         11 61 21 The most luminous Hα emitters at z ∼ 0.8-2.23 from HiZELS: evolution of AGN and star-forming galaxies. SOBRAL D., KOHN S.A., BEST P.N., et al.
2016MNRAS.457.1888S 162       D     X         4 3 61 The KMOS Redshift One Spectroscopic Survey (KROSS): dynamical properties, gas and dark matter fractions of typical z ∼ 1 star-forming galaxies. STOTT J.P., SWINBANK A.M., JOHNSON H.L., et al.
2016MNRAS.460.4075H 393       D     X C       9 38 9 The average submillimetre properties of Lyman α blobs at z = 3. HINE N.K., GEACH J.E., MATSUDA Y., et al.
2016MNRAS.461.2944A 84           X         2 14 12 ALMA observations of a z [?] 3.1 protocluster: star formation from active galactic nuclei and Lyman-alpha blobs in an overdense environment. ALEXANDER D.M., SIMPSON J.M., HARRISON C.M., et al.
2016MNRAS.463.1554S 42           X         1 29 11 About AGN ionization echoes, thermal echoes and ionization deficits in low-redshift Lyα blobs. SCHIRMER M., MALHOTRA S., LEVENSON N.A., et al.
2016MNRAS.463.1678S 2346     A D     X C F     55 7 36 The Lyα luminosity function at z = 5.7 - 6.6 and the steep drop of the faint end: implications for reionization. SANTOS S., SOBRAL D. and MATTHEE J.
2016MNRAS.463.2363K 49           X         1 3 21 The nature of Hβ+[O III] and [O II] emitters to z ∼ 5 with HiZELS: stellar mass functions and the evolution of EWs. KHOSTOVAN A.A., SOBRAL D., MOBASHER B., et al.
2015ApJ...799...38K 477     A     X C       11 45 22 NIR spectroscopic observation of massive galaxies in the protocluster at z = 3.09. KUBO M., YAMADA T., ICHIKAWA T., et al.
2015ApJ...804...17S 109       D     X         3 7 72 A deep Hubble Space Telescope and Keck search for definitive identification of Lyman continuum emitters at z∼3.1. SIANA B., SHAPLEY A.E., KULAS K.R., et al.
2015ApJ...808...37C 388       D     X C       9 23 23 Surveying galaxy proto-clusters in emission: a large-scale structure at z = 2.44 and the outlook for HETDEX. CHIANG Y.-K., OVERZIER R.A., GEBHARDT K., et al.
2015MNRAS.448.3325J 41           X         1 41 23 Submillimetre observations of WISE/radio-selected AGN and their environments. JONES S.F., BLAIN A.W., LONSDALE C., et al.
2015MNRAS.450.2615S viz 1877 T   A S   X C       43 370 11 An extragalactic spectroscopic survey of the
SSA22 field.
SAEZ C., LEHMER B.D., BAUER F.E., et al.
2015MNRAS.451..400M 3433     A D S   X C F     81 6 104 Identification of the brightest Lyα emitters at z = 6.6: implications for the evolution of the luminosity function in the reionization era. MATTHEE J., SOBRAL D., SANTOS S., et al.
2015MNRAS.451.2303S viz 1976     A D S   X C F     46 6317 43 CF-HiZELS, an ∼ 10 deg2 emission-line survey with spectroscopic follow-up: Hα, [OIII] + Hβ and [OII] luminosity functions at z = 0.8, 1.4 and 2.2. SOBRAL D., MATTHEE J., BEST P.N., et al.
2015MNRAS.453..242S 751     A D     X C F     17 2 21 A large narrow-band Hα survey at z ∼ 0.2: the bright end of the luminosity function, cosmic variance and clustering across cosmic time. STROE A. and SOBRAL D.
2015MNRAS.453.2465P 289     A     X C F     5 4 70 The brightest Lyα emitter: Pop III or black hole? PALLOTTINI A., FERRARA A., PACUCCI F., et al.
2014ApJ...783..117B 220       D S   X         5 61 79 Velocity dispersions and dynamical masses for a large sample of quiescent galaxies at z > 1: improved measures of the growth in mass and size. BELLI S., NEWMAN A.B. and ELLIS R.S.
2014ApJ...785...64S 46           X         1 5 26 What is the physical origin of strong Lyα emission? I. Demographics of Lyα emitter structures. SHIBUYA T., OUCHI M., NAKAJIMA K., et al.
2014ApJ...786..107M 278     A     X C       6 3 31 Intergalactic medium emission observations with the cosmic web imager. II. Discovery of extended, kinematically linked emission around
SSA22 Lyα blob 2.
2014ApJ...788...74S 82           X         2 44 68 What is the physical origin of strong Lyα emission? II. Gas kinematics and distribution of Lyα emitters. SHIBUYA T., OUCHI M., NAKAJIMA K., et al.
2014ApJ...792...15T 122           X C       2 37 23 A first site of galaxy cluster formation: complete spectroscopy of a protocluster at z = 6.01. TOSHIKAWA J., KASHIKAWA N., OVERZIER R., et al.
2014ApJ...793...22G 107     A     X         3 8 15 A submillimeter galaxy illuminating its circumgalactic medium: Lyα scattering in a cold, clumpy outflow. GEACH J.E., BOWER R.G., ALEXANDER D.M., et al.
2014ApJ...793..114Y 42           X         1 12 19 The properties of Lyα nebulae: gas kinematics from nonresonant lines. YANG Y., ZABLUDOFF A., JAHNKE K., et al.
2014ApJ...795...33E 205           X         5 37 79 The Lyα properties of faint galaxies at z ∼ 2-3 with systemic redshifts and velocity dispersions from Keck-MOSFIRE. ERB D.K., STEIDEL C.C., TRAINOR R.F., et al.
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