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Mrk 1506 , the SIMBAD biblio (1915 results) | C.D.S. - SIMBAD4 rel 1.8 - 2022.05.21CEST18:44:50 |
Bibcode/DOI | Score |
in Title|Abstract| Keywords |
in a table | in teXt, Caption, ... | Nb occurence | Nb objects in ref |
Citations (from ADS) |
Title | First 3 Authors |
---|---|---|---|---|---|---|---|---|---|
2022A&A...657A.122K ![]() |
150 | X | 3 | 23 | ~ | The Great Slump: Mrk 926 reveals discrete and varying Balmer line satellite components during a drastic phase of decline. | KOLLATSCHNY W., OCHMANN M.W., KASPI S., et al. | ||
2022A&A...657A.126G | 450 | S X C | 7 | 3 | ~ | Disentangling the optical AGN and host-galaxy luminosity with a probabilistic flux variation gradient. | GIANNIOTIS N., POZO NUNEZ F. and POLSTERER K.L. | ||
2022A&A...659A..67M | X * | 1 | 29 | ~ | Chemical survey of Class I protostars with the IRAM-30 m. | MERCIMEK S., CODELLA C., PODIO L., et al. | |||
2022A&A...660A...1B | 420 | D | X C | 8 | 39 | ~ | Dual-high-frequency VLBI study of blazar-jet brightness-temperature gradients and collimation profiles. | BURD P.R., KADLER M., MANNHEIM K., et al. | |
2022ApJ...926..190R | 370 | D | X C | 7 | 11 | ~ | The Role of Neutral Hydrogen in Setting the Abundances of Molecular Species in the Milky Way's Diffuse Interstellar Medium. II. Comparison between Observations and Theoretical Models. | RYBARCZYK D.R., GONG M., STANIMIROVIC S., et al. | |
2022ApJ...927...60G | 50 | X | 1 | 13 | ~ | The Paschen Jump as a Diagnostic of the Diffuse Nebular Continuum Emission in Active Galactic Nuclei. | GUO H., BARTH A.J., KORISTA K.T., et al. | ||
2022ApJ...928L...9Z | 880 | T A | X C | 16 | 2 | ~ |
The Composition and Power of the Jet of the Broad-line Radio Galaxy 3C 120. |
ZDZIARSKI A.A., PHURAVHATHU D.G., SIKORA M., et al. | |
2022MNRAS.509.1147K | 20 | D | 4 | 52 | ~ | Bolometric luminosity estimators using infrared hydrogen lines for dust obscured active galactic nuclei. | KIM D., LEE D. and IM M. | ||
2022MNRAS.509.1899N | 450 | X F | 8 | 17 | ~ | Parabolic jet shape on parsec scales in high redshift AGN. | NOKHRINA E.E., PASHCHENKO I.N. and KUTKIN A.M. | ||
2022MNRAS.509.4940T | 20 | D | 1 | 44 | ~ | Deep Extragalactic VIsible Legacy Survey (DEVILS): identification of AGN through SED fitting and the evolution of the bolometric AGN luminosity function. | THORNE J.E., ROBOTHAM A.S.G., DAVIES L.J.M., et al. | ||
2022MNRAS.510..469K | 20 | D | 2 | 75 | ~ | A decade of joint MOJAVE-Fermi AGN monitoring: localization of the gamma-ray emission region. | KRAMARENKO I.G., PUSHKAREV A.B., KOVALEV Y.Y., et al. | ||
2022MNRAS.510.1010P | 370 | D | X C F | 6 | 31 | ~ | A novel black hole mass scaling relation based on coronal gas, and its dependence with the accretion disc. | PRIETO A., RODRIGUEZ-ARDILA A., PANDA S., et al. | |
2022NatAs...6..109M | 100 | C | 1 | 5 | ~ | Multi-scale feedback and feeding in the closest radio galaxy Centaurus A. | McKINLEY B., TINGAY S.J., GASPARI M., et al. | ||
2021A&A...647A..67B ![]() |
439 | D | O X C | 9 | 29 | ~ | Jet collimation in NGC 315 and other nearby AGN. | BOCCARDI B., PERUCHO M., CASADIO C., et al. | |
2021A&A...647A.172W | 47 | X | 1 | 13 | ~ | Chemical compositions of five Planck cold clumps. | WAKELAM V., GRATIER P., RUAUD M., et al. | ||
2021A&A...648A..27V | 47 | X | 1 | 5 | ~ | Most massive double black hole 3C 454.3 and powerful gravitational wave radiation. | VOLVACH A.E., VOLVACH L.N. and LARIONOV M.G. | ||
2021A&A...650A..61F | 47 | X | 1 | 2 | ~ | Magnetized relativistic jets and helical magnetic fields. II. Radiation. | FUENTES A., TORREGROSA I., MARTI J.M., et al. | ||
2021A&A...654A.169L ![]() |
159 | D | X | 4 | 63 | ~ | Identifying changing jets through their radio variability. | LIODAKIS I., HOVATTA T., ALLER M.F., et al. | |
2021ApJ...906...85P | 187 | X C | 3 | 13 | ~ | GPCAL: a Generalized CALibration pipeline for instrumental polarization in VLBI data. | PARK J., BYUN D.-Y., ASADA K., et al. | ||
2021ApJ...907...61R | 93 | X | 2 | 18 | ~ | The relativistic jet orientation and host galaxy of the peculiar blazar PKS 1413+135. | READHEAD A.C.S., RAVI V., LIODAKIS I., et al. | ||
2021ApJ...910...35L | 47 | X | 1 | 5 | ~ | An oversized magnetic sheath wrapping around the parsec-scale jet in 3C 273. | LISAKOV M.M., KRAVCHENKO E.V., PUSHKAREV A.B., et al. | ||
2021ApJ...911...17G | 47 | X | 1 | 2 | ~ | Jet-accretion system in the nearby mJy radio galaxies. | GRANDI P., TORRESI E., MACCONI D., et al. | ||
2021ApJ...915...25T | 47 | X | 1 | 10 | ~ | Revealing thermal Comptonization of accretion disk photons in IC 4329A with AstroSat. | TRIPATHI P., DEWANGAN G.C., PAPADAKIS I.E., et al. | ||
2021ApJ...915...63L | 19 | D | 1 | 60 | ~ | Local active galactic nuclei with large broad-Hα variability reside in red galaxies. | LIU W.-J., LIRA P., YAO S., et al. | ||
2021ApJ...916...28T | 19 | D | 2 | 275 | ~ | Cross-match between the latest Swift-BAT and Fermi-LAT catalogs. | TSUJI N., YONEDA H., INOUE Y., et al. | ||
2021ApJ...916...95I | 19 | D | 2 | 58 | ~ | Spatial variations of magnetic field along active galactic nuclei jets on sub-parsec to megaparsec scales. | ITO S., INOUE Y. and KATAOKA J. | ||
2021ApJ...923...30L | 93 | X | 2 | 85 | ~ | Monitoring of jets in active galactic nuclei with VLBA experiments. XVIII. Kinematics and inner jet evolution of bright radio-loud active galaxies. | LISTER M.L., HOMAN D.C., KELLERMANN K.I., et al. | ||
2021ApJ...923L...5P | 47 | X | 1 | 8 | ~ | Reading M87's DNA: a double helix revealing a large-scale helical magnetic field. | PASETTO A., CARRASCO-GONZALEZ C., GOMEZ J.L., et al. | ||
2021ApJS..252...29K ![]() |
19 | D | 1 | 213 | ~ | BAT AGN spectroscopic survey. XX. Molecular gas in nearby hard-X-Ray-selected AGN galaxies. | KOSS M.J., STRITTMATTER B., LAMPERTI I., et al. | ||
2021MNRAS.500..215D | 19 | D | 2 | 183 | ~ | Black hole mass accretion rates and efficiency factors for over 750 AGN and multiple GBH. | DALY R.A. | ||
2021MNRAS.500.1933S | 19 | D | 1 | 92 | ~ | WISDOM project - VI. Exploring the relation between supermassive black hole mass and galaxy rotation with molecular gas. | SMITH M.D., BUREAU M., DAVIS T.A., et al. | ||
2021MNRAS.501.3741S | 1987 | A | X C F | 41 | 3 | ~ | X-ray dips in AGNs and microquasars - collapse time-scales of inner accretion disc. | SHENDE M.B., CHAUHAN P. and SUBRAMANIAN P. | |
2021MNRAS.502..206S | 19 | D | 1 | 67 | ~ | Classification of multiwavelength transients with machine learning. | SOOKNUNAN K., LOCHNER M., BASSETT B.A., et al. | ||
2021MNRAS.502L..61Y | 47 | X | 1 | 10 | ~ | A parsec-scale faint jet in the nearby changing-look Seyfert galaxy Mrk 590. | YANG J., VAN BEMMEL I., PARAGI Z., et al. | ||
2021MNRAS.503.4400D | 47 | X | 1 | 3 | ~ | Explaining temporal variations in the jet PA of the blazar OJ 287 using its BBH central engine model. | DEY L., VALTONEN M.J., GOPAKUMAR A., et al. | ||
2021MNRAS.504.4460G | 112 | D | F | 3 | 59 | ~ | Nitrogen X-ray absorption in the local ISM. | GATUZZ E., GARCIA J.A. and KALLMAN T.R. | |
2021MNRAS.504.5726F | 345 | D | X F | 7 | 24 | ~ | X-ray binary accretion states in active galactic nuclei? Sensing the accretion disc of supermassive black holes with mid-infrared nebular lines. | FERNANDEZ-ONTIVEROS J.A. and MUNOZ-DARIAS T. | |
2021MNRAS.505.1954Z | 19 | D | 3 | 13 | ~ | The X-ray spectral and variability properties of typical radio-loud quasars. | ZHU S.F., TIMLIN J.D. and BRANDT W.N. | ||
2021MNRAS.506.4960H | 252 | D | X | 6 | 51 | ~ | Fundamental X-ray corona parameters of Swift/BAT AGN. | HINKLE J.T. and MUSHOTZKY R. | |
2021MNRAS.507..991S | 47 | X | 1 | 10 | ~ | Outflows in the radio-intermediate quasar III Zw 2: a polarization study with the EVLA and uGMRT. | SILPA S., KHARB P., HARRISON C.M., et al. | ||
2021MNRAS.507.3810K | X * | 1 | 18 | ~ | Dark cloud-type chemistry in photodissociation regions with moderate ultraviolet field. | KIRSANOVA M.S., PUNANOVA A.F., SEMENOV D.A., et al. | |||
2021MNRAS.507.4638C | 47 | X | 1 | 9 | ~ | Very Large Array imaging rules out precessing radio jets in three DES-SDSS-selected candidate periodic quasars. | CHEN Y.-C., LIU X., LIAO W.-T., et al. | ||
2021RAA....21..103X | 47 | X | 1 | 5 | ~ | An explanation about the flat radio spectrum for Mrk 421. | XUE R. and WANG Z.-R. | ||
2020A&A...635A..92G | 197 | D | X | 5 | 30 | ~ | The resolved size and structure of hot dust in the immediate vicinity of AGN. | GRAVITY COLLABORATION, DEXTER J., SHANGGUAN J., et al. | |
2020A&A...635A.185P | 45 | X | 1 | 9 | ~ | NGC 3894: a young radio galaxy seen by Fermi-LAT. | PRINCIPE G., MIGLIORI G., JOHNSON T.J., et al. | ||
2020A&A...637A..55L | 18 | D | 2 | 140 | ~ | Hard X-ray properties of radio-selected blazars. | LANGEJAHN M., KADLER M., WILMS J., et al. | ||
2020A&A...639A...5M ![]() |
18 | D | 1 | 375 | ~ | X-ray absorption in INTEGRAL active galactic nuclei. Host galaxy inclination. | MALIZIA A., BASSANI L., STEPHEN J.B., et al. | ||
2020A&A...640A..31P ![]() |
63 | D | X | 2 | 298 | ~ | NuSTAR view of Swift/BAT AGN: The R-Γ correlation. | PANAGIOTOU C. and WALTER R. | |
2020A&A...641A.162P ![]() |
18 | D | 1 | 395 | ~ | Water megamaser emission in hard X-ray selected AGN. | PANESSA F., CASTANGIA P., MALIZIA A., et al. | ||
2020AJ....159..259S ![]() |
287 | D | X C | 6 | 14 | ~ | Dust reverberation of 3C 273: torus structure and lag-luminosity relation. | SOBRINO FIGAREDO C., HAAS M., RAMOLLA M., et al. | |
2020ApJ...888..107Z | 45 | X | 1 | 53 | ~ | Optical variability modeling of newly identified blazar candidates behind Magellanic Clouds. | ZYWUCKA N., TARNOPOLSKI M., BOTTCHER M., et al. | ||
2020ApJ...889L...4L | 376 | D | X | 9 | 17 | ~ | Revealing the CO X-factor in dark molecular gas through sensitive ALMA absorption observations. | LUO G., LI D., TANG N., et al. | |
2020ApJ...890..152M | 18 | D | 1 | 63 | ~ | Modeling the strongest silicate emission features of local type 1 AGNs. | MARTINEZ-PAREDES M., GONZALEZ-MARTIN O., ESPARZA-ARREDONDO D., et al. | ||
2020ApJ...891...59R | 269 | X | 6 | 10 | ~ | Estimating the jet power of Mrk 231 during the 2017-2018 flare. | REYNOLDS C., PUNSLY B., MINIUTTI G., et al. | ||
2020ApJ...892...18K ![]() |
18 | D | 1 | 645 | ~ | A more efficient search for H2O megamaser galaxies: the power of X-ray and mid-infrared photometry. | KUO C.Y., HSIANG J.Y., CHUNG H.H., et al. | ||
2020ApJ...892..105A ![]() |
197 | D | X | 5 | 376 | ~ | The fourth catalog of active galactic nuclei detected by the Fermi Large Area Telescope. | AJELLO M., ANGIONI R., AXELSSON M., et al. | |
2020ApJ...895L...2N | 18 | D | * | 1 | 11 | ~ | Substructure formation in a protostellar disk of L1527 IRS. | NAKATANI R., LIU H.B., OHASHI S., et al. | |
2020ApJ...897...47C | 45 | X | 1 | 5 | ~ | Broadband X-ray observation of broad-line radio galaxy 3C 109. | CHALISE S., LOHFINK A.M., KARA E., et al. | ||
2020ApJ...899....2Z | 18 | D | 1 | 98 | ~ | Jet properties of compact steep-spectrum sources and an Eddington-ratio-driven unification scheme of jet radiation in active galactic nuclei. | ZHANG J., ZHANG H.-M., GAN Y.-Y., et al. | ||
2020ApJ...899...82B ![]() |
18 | D | 1 | 180 | ~ | The discovery of a hidden broad-line AGN in a bulgeless galaxy: Keck NIR spectroscopic observations of SDSS J085153.64+392611.76. | BOHN T., CANALIZO G., SATYAPAL S., et al. | ||
2020ApJ...901...35L | 18 | D | 1 | 34 | ~ | Calibrating Mg II-based black hole mass estimators using low-to-high-luminosity active galactic nuclei. | LE H.A.N., WOO J.-H. and XUE Y. | ||
2020ApJ...901..111K | 376 | D | X | 9 | 41 | ~ | NuSTAR hard X-ray spectra of radio galaxies. | KANG J., WANG J. and KANG W. | |
2020ApJ...901..133Y | 18 | D | 3 | 122 | ~ | The supermassive black hole masses of reverberation-mapped active galactic nuclei. | YU L.-M., BIAN W.-H., ZHANG X.-G., et al. | ||
2020ApJ...903...44P | 18 | D | 3 | 28 | ~ | The extreme red excess in blazar ultraviolet broad emission lines. | PUNSLY B., MARZIANI P., BERTON M., et al. | ||
2020ApJ...903..112D | 18 | D | 5 | 57 | ~ | The Sloan Digital Sky Survey Reverberation Mapping Project: estimating masses of black holes in quasars with single-epoch spectroscopy. | DALLA BONTA E., PETERSON B.M., BENTZ M.C., et al. | ||
2020ApJ...905...42G | 45 | X | 1 | 13 | ~ | Searching for nuclear obscuration in the infrared spectra of nearby FR I radio galaxies. | GLEISINGER R.C., O'DEA C.P., GALLIMORE J.F., et al. | ||
2020ApJS..247...33A ![]() |
18 | D | 2 | 5180 | ~ | Fermi Large Area Telescope fourth source catalog. | ABDOLLAHI S., ACERO F., ACKERMANN M., et al. | ||
2020MNRAS.491..532G | 18 | D | 3 | 89 | ~ | The soft X-ray excess: NLS1s versus BLS1s. | GLIOZZI M. and WILLIAMS J.K. | ||
2020MNRAS.491.2576W | 45 | X | 1 | 25 | ~ | Revisiting the long-term X-ray spectral evolution of Seyfert 1 galaxies. | WENG S.-S., CHEN Y., WANG T.-T., et al. | ||
2020MNRAS.491.5881Y | 18 | D | 3 | 120 | ~ | An extended size-luminosity relation for the reverberation-mapped AGNs: the role of the accretion rate. | YU L.-M., ZHAO B.-X., BIAN W.-H., et al. | ||
2020MNRAS.492.3829L | 45 | X | 1 | 16 | ~ | Multiwavelength behaviour of the blazar 3C 279: decade-long study from γ-ray to radio. | LARIONOV V.M., JORSTAD S.G., MARSCHER A.P., et al. | ||
2020MNRAS.492.4666R | 582 | A | D | X C F | 12 | 30 | ~ | A search for Centaurus A-like features in the spectra of Fermi-LAT detected radio galaxies. | RULTEN C.B., BROWN A.M. and CHADWICK P.M. |
2020MNRAS.493..930J | 18 | D | 1 | 127 | ~ | The relationship between X-ray and optical absorbers in active galactic nuclei. | JAFFARIAN G.W. and GASKELL C.M. | ||
2020MNRAS.493.1227R | 735 | D | S X C | 15 | 13 | ~ | Modelling the AGN broad-line region using single-epoch spectra - II. Nearby AGNs. | RAIMUNDO S.I., VESTERGAARD M., GOAD M.R., et al. | |
2020MNRAS.495..278U | 152 | D | X C | 3 | 10 | ~ | On Spin dependence of the Fundamental Plane of black hole activity. | UNAL C. and LOEB A. | |
2020MNRAS.495..614P | 18 | D | 1 | 49 | ~ | Determination of magnetic field strength on the event horizon of supermassive black holes in active galactic nuclei. | PIOTROVICH M.Y., MIKHAILOV A.G., BULIGA S.D., et al. | ||
2020MNRAS.495.3576K | 582 | A | D | X C | 13 | 68 | ~ | A transition from parabolic to conical shape as a common effect in nearby AGN jets. | KOVALEV Y.Y., PUSHKAREV A.B., NOKHRINA E.E., et al. |
2020MNRAS.496..245Z | 90 | X | 2 | 7 | ~ | The Lx-Luv-Lradio relation and corona-disc-jet connection in optically selected radio-loud quasars. | ZHU S.F., BRANDT W.N., LUO B., et al. | ||
2020MNRAS.496..903H | 45 | X | 1 | 85 | ~ | A search for γ-ray emission from a sample of local Universe low-frequency selected radio galaxies. | HARVEY M., RULTEN C.B. and CHADWICK P.M. | ||
2020MNRAS.496.1488M | 45 | X | 1 | 24 | ~ | The nuclear architecture of NGC 4151: on the path toward a universal outflow mechanism in light of NGC 1068. | MAY D., STEINER J.E., MENEZES R.B., et al. | ||
2020MNRAS.497.2910H | 2598 | T K A | D | X C F | 56 | 2 | ~ |
Robotic reverberation mapping of the broad-line radio galaxy 3C 120. |
HLABATHE M.S., STARKEY D.A., HORNE K., et al. |
2020MNRAS.498.2532N | 197 | D | X C | 4 | 15 | ~ | Physical parameters of active galactic nuclei derived from properties of the jet geometry transition region. | NOKHRINA E.E., KOVALEV Y.Y. and PUSHKAREV A.B. | |
2020MNRAS.498.3592M | 45 | X | 1 | 15 | ~ | Evidence for periodic accretion-ejection in LS I +61°303. | MASSI M., CHERNYAKOVA M., KRAUS A., et al. | ||
2020MNRAS.498.5207W | 152 | D | X | 4 | 72 | ~ | A Suzaku sample of unabsorbed narrow-line and broad-line Seyfert 1 galaxies - I. X-ray spectral properties. | WADDELL S.G.H. and GALLO L.C. | |
2020MNRAS.498L..35K | 45 | X | 1 | 2 | ~ | The 2020 April-June super-outburst of OJ 287 and its long-term multiwavelength light curve with Swift: binary supermassive black hole and jet activity. | KOMOSSA S., GRUPE D., PARKER M.L., et al. | ||
2020MNRAS.499.1499S | 18 | D | 1 | 20 | ~ | New explanation of opposite position angles in red and blue wings of spectral lines. | SILANT'EV N.A., ALEKSEEVA G.A. and ANANJEVSKAJA Y.K. | ||
2020MNRAS.499.1561Z | 45 | X | 1 | 6 | ~ | Blob formation and ejection from the radiative inefficient accretion flow around massive black hole. | ZHAO T.-L., YUAN Y.-F. and KUMAR R. | ||
2020NatAs...4..517W | 63 | D | X | 2 | 56 | ~ | A parallax distance to 3C 273 through spectroastrometry and reverberation mapping. | WANG J.-M., SONGSHENG Y.-Y., LI Y.-R., et al. | |
2019A&A...625A..25M | 192 | D | X | 5 | 17 | ~ | Relation between winds and jets in radio-loud AGN. | MEHDIPOUR M. and COSTANTINI E. | |
2019A&A...626A..60A ![]() |
44 | X | 1 | 162 | ~ | F-GAMMA: Multi-frequency radio monitoring of Fermi blazars. The 2.64 to 43 GHz Effelsberg light curves from 2007-2015. | ANGELAKIS E., FUHRMANN L., MYSERLIS I., et al. | ||
2019A&A...627A.148A ![]() |
522 | X C | 11 | 30 | ~ | Gamma-ray emission in radio galaxies under the VLBI scope. I. Parsec-scale jet kinematics and high-energy properties of γ-ray-detected TANAMI radio galaxies. | ANGIONI R., ROS E., KADLER M., et al. | ||
2019A&A...629A..82T | 44 | X | 1 | 8 | ~ | Exploring the multiphase medium in MKW 08: from the central active galaxy up to cluster scales. | TUMER A., TOMBESI F., BOURDIN H., et al. | ||
2019A&A...630A..56P ![]() |
44 | X | 1 | 4 | ~ | Is there a non-stationary γ-ray emission zone 42 pc from the 3C 279 core? | PATINO-ALVAREZ V.M., DZIB S.A., LOBANOV A., et al. | ||
2019A&A...630A.103B | 44 | X | 1 | 13 | ~ | A cosmic collider: Was the IceCube neutrino generated in a precessing jet-jet interaction in TXS 0506+056? | BRITZEN S., FENDT C., BOTTCHER M., et al. | ||
2019A&A...630A.131M | 17 | D | 1 | 37 | ~ | Relations between phenomenological and physical parameters in the hot coronae of AGNs computed with the MoCA code. | MIDDEI R., BIANCHI S., MARINUCCI A., et al. | ||
2019AN....340..437A ![]() |
17 | D | 1 | 2121 | ~ | Optical variability of blazars. | ABRAHAMYAN H.V., MICKAELIAN A.M., PARONYAN G.M., et al. | ||
2019ApJ...870...84C | 17 | D | 1 | 124 | ~ | Interpretation of departure from the broad-line region scaling in active galactic nuclei. | CZERNY B., WANG J.-M., DU P., et al. | ||
2019ApJ...872..148C ![]() |
17 | D | 1 | 15662 | ~ | Radio sources in the nearby universe. | CONDON J.J., MATTHEWS A.M. and BRODERICK J.J. | ||
2019ApJ...873..101Z | 17 | D | 1 | 30 | ~ | On constraining the growth history of massive black holes via their distribution on the spin-mass plane. | ZHANG X. and LU Y. | ||
2019ApJ...874...43L ![]() |
17 | D | 1 | 435 | ~ | MOJAVE. XVII. Jet kinematics and parent population properties of relativistically beamed radio-loud blazars. | LISTER M.L., HOMAN D.C., HOVATTA T., et al. | ||
2019ApJ...875...50B | 148 | D | X | 4 | 65 | ~ | Calibrating Mg II-based black hole mass estimators with Hβ reverberation measurements. | BAHK H., WOO J.-H. and PARK D. | |
2019ApJ...875...88B | 44 | X | 1 | 29 | ~ | A discovery of young radio sources in the cores of giant radio galaxies selected at hard X-rays. | BRUNI G., PANESSA F., BASSANI L., et al. | ||
2019ApJ...876L..20G | 17 | D | 1 | 8 | ~ | Resolving the radio-loud/radio-quiet dichotomy without thick disks. | GAROFALO D. | ||
2019ApJ...877...23L ![]() |
17 | D | 2 | 73 | ~ | Supermassive black holes with high accretion rates in active galactic nuclei. X. Optical variability characteristics. | LU K.-X., HUANG Y.-K., ZHANG Z.-X., et al. | ||
2019ApJ...877..130S | 636 | A | S X | 14 | 6 | ~ | Episodic jets from black hole accretion disks. | SHENDE M.B., SUBRAMANIAN P. and SACHDEVA N. | |
2019ApJ...879...68S | 17 | D | 2 | 90 | ~ | The extragalactic gamma-ray background from core-dominated radio galaxies. | STECKER F.W., SHRADER C.R. and MALKAN M.A. | ||
2019ApJ...880...68R | 17 | D | 1 | 48 | ~ | H I spectroscopy of reverberation-mapped active galactic nuclei. | ROBINSON J.H., BENTZ M.C., JOHNSON M.C., et al. | ||
2019ApJ...881..140S | 44 | X | 1 | 11 | ~ | Differential interferometric signatures of close binaries of supermassive black holes in active galactic nuclei. | SONGSHENG Y.-Y., WANG J.-M., LI Y.-R., et al. | ||
2019ApJ...881..154P ![]() |
17 | D | 1 | 182 | ~ | BAT AGN spectroscopic survey. XVI. General physical characteristics of BAT blazars. | PALIYA V.S., KOSS M., TRAKHTENBROT B., et al. | ||
2019ApJ...883..170M | 17 | D | 3 | 119 | ~ | Can reverberation-measured quasars be used for cosmology? | MARTINEZ-ALDAMA M.L., CZERNY B., KAWKA D., et al. | ||
2019ApJ...884...11G ![]() |
17 | D | 1 | 110 | ~ | Exploring the mid-infrared SEDs of six AGN dusty torus models. II. The data. | GONZALEZ-MARTIN O., MASEGOSA J., GARCIA-BERNETE I., et al. | ||
2019ApJ...886...33L ![]() |
44 | X | 1 | 244 | ~ | Mid-IR variability and dust reverberation mapping of low-z quasars. I. Data, methods, and basic results. | LYU J., RIEKE G.H. and SMITH P.S. | ||
2019ApJ...886...37D | 104 | D | X | 3 | 184 | ~ | Black hole spin and accretion disk magnetic field strength estimates for more than 750 active galactic nuclei and multiple galactic black holes. | DALY R.A. | |
2019ApJ...886...42D ![]() |
17 | D | 2 | 76 | ~ | The radius-luminosity relationship depends on optical spectra in active galactic nuclei. | DU P. and WANG J.-M. | ||
2019ApJ...887..200F | X * | 1 | 9 | ~ | A dissection of spatially resolved AGN feedback across the electromagnetic spectrum. | FISCHER T., SMITH K.L., KRAEMER S., et al. | |||
2019ApJS..242....4D ![]() |
17 | D | 1 | 9523 | ~ | Two new catalogs of blazar candidates in the WISE Infrared sky. | D'ABRUSCO R., ALVAREZ CRESPO N., MASSARO F., et al. | ||
2019ApJS..242....5X ![]() |
17 | D | 1 | 3393 | ~ | Structure effects for 3417 Celestial Reference Frame radio sources. | XU M.H., ANDERSON J.M., HEINKELMANN R., et al. | ||
2019MNRAS.482.4985A | 192 | D | C F | 8 | 43 | ~ | Spectropolarimetry of Seyfert 1 galaxies with equatorial scattering: black hole masses and broad-line region characteristics. | AFANASIEV V.L., POPOVIC L.C. and SHAPOVALOVA A.I. | |
2019MNRAS.483.3382B | 801 | D | X C | 18 | 10 | ~ | Intra-night optical variability of misaligned active galaxies. | BHATTACHARYA D., GULATI S. and STALIN C.S. | |
2019MNRAS.484.4298M | 44 | X | 1 | 5 | ~ | Spectro-photometric decomposition of galaxy structural components. | MENDEZ-ABREU J., SANCHEZ S.F. and DE LORENZO-CACERES A. | ||
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2005ApJ...633L..77M ![]() |
1 | 49 | 110 | The Swift/BAT high-latitude survey: first results. | MARKWARDT C.B., TUELLER J., SKINNER G.K., et al. | ||||
2005ApJ...634..161H | 76 | 145 | The relationship of hard X-ray and optical line emission in low-redshift active galactic nuclei. | HECKMAN T.M., PTAK A., HORNSCHEMEIER A., et al. | |||||
2005ApJ...635L..17L | 43 | 23 | Observational evidence of jet precession in galactic nuclei caused by accretion disks. | LU J.-F. and ZHOU B.-Y. | |||||
2005ApJS..156...13M | 62 | 103 | A Chandra survey of quasar jets: first results. | MARSHALL H.L., SCHWARTZ D.A., LOVELL J.E.J., et al. | |||||
2005ApJS..159..197E | 34 | 62 | Molecular gas and nuclear activity in radio galaxies detected by IRAS. | EVANS A.S., MAZZARELLA J.M., SURACE J.A., et al. | |||||
2005ChJAA...5...21B | 17 | 2 | The relation between the inclinations of broad line regions and the accretion disk. | BIAN W.-H. | |||||
2005ChJAA...5..448L | 21 | 5 | Radio identifications of Markarian galaxies and the correlation between radio and far-infrared properties. | LUO S.-G. and WU X.-B. | |||||
2005MNRAS.357..793K | 40 | 0 | Principal components in active galactic nuclei variability data and the estimation of the flux contributions from different components. | KOEN C. and LOMBARD F. | |||||
2005MNRAS.358.1231L | 81 | 5 | Correlations among multiwavelength luminosities of star-forming galaxies. | LOU Y.-Q. and BIAN F.-Y. | |||||
2005MNRAS.359.1549B | 5 | 3 | Tentative detection of warm intervening gas towards PKS 0548-322 with XMM-Newton. | BARCONS X., PAERELS F.B.S., CARRERA F.J., et al. | |||||
2005MNRAS.361..155W | 11 | 15 | Optical monitoring of PKS 1510-089: a binary black hole system? | WU J., ZHOU X., PENG B., et al. | |||||
2005MNRAS.361.1337M | 23 | 25 | Constraints on hot metals in the vicinity of the Galaxy. | McKERNAN B., YAQOOB T. and REYNOLDS C.S. | |||||
2005MNRAS.364.1343D | 1 | 44 | 123 | Radio bubbles in clusters of galaxies. | DUNN R.J.H., FABIAN A.C. and TAYLOR G.B. | ||||
2005MmSAI..76...13M | 6 | 10 | The relationship between radio and higher-frequency emission in active galactic nuclei. | MARSCHER A.P. | |||||
2005MmSAI..76..168M | 1 | 2 | 5 | Multiband impressions of Active Galactic Nuclei. | MARSCHER A.P. | ||||