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FRB 180924 , the SIMBAD biblio (92 results) | C.D.S. - SIMBAD4 rel 1.8 - 2023.04.01CEST15:12:34 |
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 |
---|---|---|---|---|---|---|---|---|---|
2019Sci...365..565B | 1107 | X | 26 | 8 | ~ | A single fast radio burst localized to a massive galaxy at cosmological distance. | BANNISTER K.W., DELLER A.T., PHILLIPS C., et al. | ||
2019ApJ...882L..13X | 43 | X | 1 | 32 | ~ | Limits on the weak equivalence principle and photon mass with FRB 121102 subpulses. | XING N., GAO H., WEI J.-J., et al. | ||
2019ApJ...882..100G | 43 | X | 1 | 11 | ~ | A search for Gamma-Ray prompt emission associated with the Lorimer burst FRB 010724. | GUIDORZI C., MARONGIU M., MARTONE R., et al. | ||
2019ApJ...882..108W | 43 | X | 1 | 5 | ~ | A universal energy distribution for FRB 121102. | WANG F.Y. and ZHANG G.Q. | ||
2019ApJ...884L..26L | 468 | S X C | 9 | 41 | ~ | The FRB 121102 host is atypical among nearby fast radio bursts. | LI Y., ZHANG B., NAGAMINE K., et al. | ||
2019A&A...631A..62M | 43 | X | 1 | 45 | ~ | A cumulative search for hard X/γ-ray emission associated with fast radio bursts in Fermi/GBM data. | MARTONE R., GUIDORZI C., MARGUTTI R., et al. | ||
2019MNRAS.489.5688M | 43 | X | 1 | 5 | ~ | Self-trapping as the possible beaming mechanism for FRBs. | MACHABELI G., ROGAVA A. and TEVDORASHVILI B. | ||
2019ApJ...886..110M | 1345 | A | S X C | 30 | 11 | ~ | Fast radio bursts from magnetars born in binary neutron star mergers and accretion induced collapse. | MARGALIT B., BERGER E. and METZGER B.D. | |
2019ApJ...886..135P | 366 | A | S X | 8 | 10 | ~ | Estimates of fast radio burst dispersion measures from cosmological simulations. | POL N., LAM M.T., McLAUGHLIN M.A., et al. | |
2019MNRAS.490....1A | 43 | X | 1 | 6 | ~ | A fast radio burst in the direction of the Virgo Cluster. | AGARWAL D., LORIMER D.R., FIALKOV A., et al. | ||
2019MNRAS.489.3643M | 85 | X | 2 | 12 | ~ | Non-detection of fast radio bursts from six gamma-ray burst remnants with possible magnetar engines. | MEN Y., AGGARWAL K., LI Y., et al. | ||
2019MNRAS.489.4001G | 43 | X | 1 | 9 | ~ | GBTrans: a commensal search for radio pulses with the Green Bank 20-m telescope. | GOLPAYEGANI G., LORIMER D.R., ELLINGSON S.W., et al. | ||
2019ApJ...887L..30K | 128 | X | 3 | 5 | ~ | Faint repetitions from a bright fast radio burst source. | KUMAR P., SHANNON R.M., OSLOWSKI S., et al. | ||
2020ApJ...888L..24M | 44 | X | 1 | 9 | ~ | The nearby luminous transient AT2018cow: a magnetar formed in a subrelativistically expanding nonjetted explosion. | MOHAN P., AN T. and YANG J. | ||
2020ApJ...888..105Y | 131 | X | 3 | 9 | ~ | The Galactic halo contribution to the dispersion measure of extragalactic fast radio bursts. | YAMASAKI S. and TOTANI T. | ||
2020A&A...633A..84G | 44 | X | 1 | 52 | ~ | Upgraded antennas for pulsar observations in the Argentine Institute of Radio astronomy. | GANCIO G., LOUSTO C.O., COMBI L., et al. | ||
2020Natur.577..190M | 12 | ~ | A repeating fast radio burst source localized to a nearby spiral galaxy. | MARCOTE B., NIMMO K., HESSELS J.W.T., et al. | |||||
2020MNRAS.491.1498C | 44 | X | 1 | 9 | ~ | Statistical properties of magnetar bursts and FRB 121102. | CHENG Y., ZHANG G.Q. and WANG F.Y. | ||
2020ApJ...889..135L | 44 | X | 1 | 3 | ~ | Radius-to-frequency mapping and FRB frequency drifts. | LYUTIKOV M. | ||
2020ApJ...889..158E | 87 | X | 2 | 5 | ~ | The effects of plasma lensing on the inferred dispersion measures of fast radiobursts. | ER X., YANG Y.-P. and ROGERS A. | ||
2020MNRAS.492.3753K | 87 | X | 2 | 7 | ~ | The impact of the environment of white dwarf mergers on fast radio bursts. | KUNDU E. and FERRARIO L. | ||
2020A&A...634A.105S | 44 | X | 1 | 68 | ~ | A dispersion excess from pulsar wind nebulae and supernova remnants: Implications for pulsars and FRBs. | STRAAL S.M., CONNOR L. and VAN LEEUWEN J. | ||
2020ApJ...891...72W | 505 | A | X C | 11 | 5 | ~ | Fast radio bursts from activity of neutron stars newborn in BNS mergers: offset, birth rate, and observational properties. | WANG F.Y., WANG Y.Y., YANG Y.-P., et al. | |
2020ApJ...891L..39W | 44 | X | 1 | 3 | ~ | Testing the hypothesis of a compact-binary-coalescence origin of fast radio bursts using a multimessenger approach. | WANG M.-H., AI S.-K., LI Z.-X., et al. | ||
2020ApJ...892L..10Y | 44 | X | 1 | 1 | ~ | Fast radio bursts as strong waves interacting with the ambient medium. | YANG Y.-P. and ZHANG B. | ||
2020ApJ...892..135W | 87 | X | 2 | 4 | ~ | Fast radio burst counterparts and their implications for the central engine. | WANG J.-S. and LAI D. | ||
2020ApJ...893....9Z | 348 | X | 8 | 8 | ~ | Magnetars from neutron star-white dwarf mergers: application to fast radio bursts. | ZHONG S.-Q. and DAI Z.-G. | ||
2020ApJ...893...44Z | 44 | X | 1 | 6 | ~ | The rarity of repeating fast radio bursts from binary neutron star mergers. | ZHANG G.Q., YI S.X. and WANG F.Y. | ||
2020MNRAS.494L..64K | 44 | X | 1 | 8 | ~ | Are fast radio bursts made by neutron stars? | KATZ J.I. | ||
2020MNRAS.494.2886H | 87 | X | 2 | 15 | ~ | Luminosity-duration relations and luminosity functions of repeating and non-repeating fast radio bursts. | HASHIMOTO T., GOTO T., WANG T.-W., et al. | ||
2020ApJ...895....7Y | 104 | D | X | 3 | 11 | ~ | Are persistent emission luminosity and rotation measure of fast radio bursts related? | YANG Y.-P., LI Q.-C. and ZHANG B. | |
2020ApJ...895...33W | 44 | X | 1 | 6 | ~ | A new method to measure Hubble parameter H(z) using fast radio bursts. | WU Q., YU H. and WANG F.Y. | ||
2020ApJ...895L..37B | 888 | D | S X C F | 18 | 12 | ~ | The host galaxies and progenitors of fast radio bursts localized with the Australian square kilometre array Pathfinder. | BHANDARI S., SADLER E.M., PROCHASKA J.X., et al. | |
2020ApJ...895L..49P | 44 | X | 1 | 6 | ~ | A data-driven technique Using millisecond transients to measure the Milky Way halo. | PLATTS E., PROCHASKA J.X. and LAW C.J. | ||
2020ApJ...895...98E | 44 | X | 1 | 27 | ~ | Wandering massive black holes or analogs of the first repeating fast radio burst? | EFTEKHARI T., BERGER E., MARGALIT B., et al. | ||
2020MNRAS.494.4627M | 131 | X | 3 | 7 | ~ | Constraints on the engines of fast radio bursts. | MARGALIT B., METZGER B.D. and SIRONI L. | ||
2020A&A...637A..69G | 17 | D | 8 | 43 | ~ | A search for prompt γ-ray counterparts to fast radio bursts in the Insight-HXMT data. | GUIDORZI C., MARONGIU M., MARTONE R., et al. | ||
2020Natur.581..391M | 131 | X | 3 | 19 | ~ | A census of baryons in the Universe from localized fast radio bursts. | MACQUART J.-P., PROCHASKA J.X., McQUINN M., et al. | ||
2020PASP..132c4202B | 87 | F | 2 | 6 | ~ | STARE2: detecting fast radio bursts in the Milky Way. | BOCHENEK C.D., McKENNA D.L., BELOV K.V., et al. | ||
2020ApJ...896L..11L | 44 | X | 1 | 8 | ~ | Constraints on compact dark matter with fast radio burst observations. | LIAO K., ZHANG S.-B., LI Z., et al. | ||
2020ApJ...896...71L | 44 | X | 1 | 8 | ~ | Persistent radio emission from synchrotron heating by a repeating fast radio burst source in a nebula. | LI Q.-C., YANG Y.-P. and DAI Z.-G. | ||
2020MNRAS.495.2416J | 279 | D | X C | 6 | 30 | ~ | Which bright fast radio bursts repeat? | JAMES C.W., OSLOWSKI S., FLYNN C., et al. | |
2020MNRAS.496L..28L | 113 | A | X | 3 | 7 | ~ | Cosmology-insensitive estimate of IGM baryon mass fraction from five localized fast radio bursts. | LI Z., GAO H., WEI J.-J., et al. | |
2020ApJ...899L...6L | 392 | A | D | X | 10 | 14 | ~ | A comparative study of host galaxy properties between fast radio bursts and stellar transients. | LI Y. and ZHANG B. |
2020MNRAS.496.3390B | 44 | X | 1 | 13 | ~ | Periodicity in recurrent fast radio bursts and the origin of ultralong period magnetars. | BENIAMINI P., WADIASINGH Z. and METZGER B.D. | ||
2020A&A...639A.119M | 392 | X C F | 7 | 5 | ~ | A search for supernova-like optical counterparts to ASKAP-localised fast radio bursts. | MARNOCH L., RYDER S.D., BANNISTER K.W., et al. | ||
2020MNRAS.497.1382Q | 104 | D | X | 3 | 33 | ~ | A population analysis of pulse broadening in ASKAP fast radio bursts. | QIU H., SHANNON R.M., FARAH W., et al. | |
2020MNRAS.497.3131G | 1828 | A | D | X C F | 41 | 5 | ~ | Constraining a neutron star merger origin for localized fast radio bursts. | GOURDJI K., ROWLINSON A., WIJERS R.A.M.J., et al. |
2020MNRAS.497.3335D | 2498 | D | S X C F | 55 | 13 | ~ | High time resolution and polarization properties of ASKAP-localized fast radio bursts. | DAY C.K., DELLER A.T., SHANNON R.M., et al. | |
2020ApJ...899..124B | 148 | D | X C | 3 | 27 | ~ | Population modeling of Fast Radio Bursts from source properties. | BHATTACHARYA M. and KUMAR P. | |
2020MNRAS.497.4107H | 87 | X | 2 | 10 | ~ | Fast radio bursts to be detected with the Square Kilometre Array. | HASHIMOTO T., GOTO T., ON A.Y.L., et al. | ||
2020ApJ...900..122S | 392 | X C | 8 | 2 | ~ | First constraints on compact dark matter from fast radio burst microstructure. | SAMMONS M.W., MACQUART J.-P., EKERS R.D., et al. | ||
2020ApJ...900..170Z | 148 | D | X | 4 | 12 | ~ | Dispersion measures of fast radio burst host galaxies derived from IllustrisTNG simulation. | ZHANG G.Q., YU H., HE J.H., et al. | |
2020MNRAS.498.2384L | 61 | D | X | 2 | 13 | ~ | Detectability of radio afterglows from binary neutron star mergers and implications for fast radio bursts. | LIN H. and TOTANI T. | |
2020MNRAS.498.3927H | 87 | X | 2 | 48 | ~ | No redshift evolution of non-repeating fast radio burst rates. | HASHIMOTO T., GOTO T., ON A.Y.L., et al. | ||
2020ApJ...901L..20B | 131 | X | 3 | 16 | ~ | Limits on precursor and afterglow radio emission from a fast radio burst in a star-forming galaxy. | BHANDARI S., BANNISTER K.W., LENC E., et al. | ||
2020MNRAS.499..355W | 192 | D | X C | 4 | 32 | ~ | On the magnetoionic environments of fast radio bursts. | WANG W.-Y., ZHANG B., CHEN X., et al. | |
2020ApJ...903..152H | 61 | D | X | 2 | 32 | ~ | Host galaxy properties and offset distributions of fast radio bursts: implications for their progenitors. | HEINTZ K.E., PROCHASKA J.X., SIMHA S., et al. | |
2021ApJ...906...49Z | 90 | F | 1 | 7 | ~ | Intergalactic medium dispersion measures of fast radio bursts estimated from IllustrisTNG simulation and their cosmological applications. | ZHANG Z.J., YAN K., LI C.M., et al. | ||
2021ApJ...907L...3K | 90 | X | 2 | 9 | ~ | Deep optical observations contemporaneous with emission from the periodic FRB 180916.J0158+65. | KILPATRICK C.D., BURCHETT J.N., JONES D.O., et al. | ||
2021ApJ...907L..31B | 90 | X | 2 | 7 | ~ | Localized fast radio bursts are consistent with magnetar progenitors formed in core-collapse supernovae. | BOCHENEK C.D., RAVI V. and DONG D. | ||
2021ApJ...907..111Z | 45 | X | 1 | 19 | ~ | Dispersion and rotation measures from the ejecta of compact binary mergers: clue to the progenitors of fast radio bursts. | ZHAO Z.Y., ZHANG G.Q., WANG Y.Y., et al. | ||
2020RAA....20..206W | 61 | D | X | 2 | 11 | ~ | Combined limit on the photon mass with nine localized fast radio bursts. | WEI J.-J. and WU X.-F. | |
2021ApJ...911...95A | 690 | D | X C | 15 | 15 | ~ | Probabilistic association of transients to their hosts (PATH). | AGGARWAL K., BUDAVARI T., DELLER A.T., et al. | |
2021NatAs...5..401T | 108 | D | C | 2 | 29 | ~ | An X-ray burst from a magnetar enlightening the mechanism of fast radio bursts. | TAVANI M., CASENTINI C., URSI A., et al. | |
2021MNRAS.505.5356B | 63 | D | X | 2 | 14 | ~ | The cosmic dispersion measure in the EAGLE simulations. | BATTEN A.J., DUFFY A.R., WIJERS N.A., et al. | |
2021ApJ...915..102V | 18 | D | 1 | 91 | ~ | AGILE observations of fast radio bursts. | VERRECCHIA F., CASENTINI C., TAVANI M., et al. | ||
2021ApJ...917L..11K | 90 | X | 2 | 5 | ~ | Dynamical formation channels for fast radio bursts in globular clusters. | KREMER K., PIRO A.L. and LI D. | ||
2021ApJ...917...75M | 421 | D | X C | 9 | 23 | ~ | A high-resolution view of fast radio burst host environments. | MANNINGS A.G., FONG W.-F., SIMHA S., et al. | |
2021A&A...653A.119N | 152 | D | X | 4 | 19 | ~ | Constraining bright optical counterparts of fast radio bursts. | NUNEZ C., TEJOS N., PIGNATA G., et al. | |
2021ApJ...921..134S | 654 | T A | X C | 13 | 3 | ~ |
Estimating the contribution of foreground halos to the FRB 180924 dispersion measure. |
SIMHA S., TEJOS N., PROCHASKA J.X., et al. | |
2016PASA...33...45P ![]() |
16 | D | 1 | 108 | ~ | FRBCAT: The Fast Radio Burst Catalogue. | PETROFF E., BARR E.D., JAMESON A., et al. | ||
2022MNRAS.509.4775J | 19 | D | 1 | 54 | ~ | The z-DM distribution of fast radio bursts. | JAMES C.W., PROCHASKA J.X., MACQUART J.-P., et al. | ||
2022AJ....163...69B | 19 | D | 3 | 33 | ~ | Characterizing the fast radio burst host galaxy population and its connection to transients in the local and extragalactic universe. | BHANDARI S., HEINTZ K.E., AGGARWAL K., et al. | ||
2022MNRAS.511..662H | 19 | D | 1 | 9 | ~ | A new measurement of the Hubble constant using fast radio bursts. | HAGSTOTZ S., REISCHKE R. and LILOW R. | ||
2022ApJ...927...55L | 65 | D | X | 2 | 25 | ~ | On the Fast Radio Burst and Persistent Radio Source Populations. | LAW C.J., CONNOR L. and AGGARWAL K. | |
2022ApJS..259...13Q | 47 | X | 1 | 26 | ~ | Linking Extragalactic Transients and Their Host Galaxy Properties: Transient Sample, Multiwavelength Host Identification, and Database Construction. | QIN Y.-J., ZABLUDOFF A., KISLEY M., et al. | ||
2022ApJ...928....9L | 187 | X C | 3 | 2 | ~ | Constraining the Cosmic Baryon Distribution with Fast Radio Burst Foreground Mapping. | LEE K.-G., ATA M., KHRYKIN I.S., et al. | ||
2022Sci...375.1266F | 19 | D | 1 | 23 | ~ | Frequency-dependent polarization of repeating fast radio bursts – implications for their origin. | FENG Y., LI D., YANG Y.-P., et al. | ||
2022ApJ...930..172L | 65 | D | X | 2 | 30 | ~ | Simultaneous View of FRB 180301 with FAST and NICER during a Bursting Phase. | LAHA S., YOUNES G., WADIASINGH Z., et al. | |
2022ApJ...931...88C | 205 | D | X | 5 | 32 | ~ | Redshift Estimation and Constraints on Intergalactic and Interstellar Media from Dispersion and Scattering of Fast Radio Bursts. | CORDES J.M., OCKER S.K. and CHATTERJEE S. | |
2022RAA....22c5004H | 47 | X | 1 | 8 | ~ | Fast Radio Bursts as Crustal Dynamical Events Induced by Magnetic Field Evolution in Young Magnetars. | HORVATH J.E., MORAES P.H.R.S., DE AVELLAR M.G.B., et al. | ||
2022MNRAS.514.5866G | 19 | D | 1 | 28 | ~ | The ultranarrow FRB20191107B, and the origins of FRB scattering. | GUPTA V., FLYNN C., FARAH W., et al. | ||
2022ApJ...933...57H | 93 | X | 2 | 3 | ~ | What It Takes to Measure Reionization with Fast Radio Bursts. | HEIMERSHEIM S., SARTORIO N.S., FIALKOV A., et al. | ||
2022MNRAS.515L...1W | 112 | D | F | 2 | 21 | ~ | An 8 per cent determination of the hubble constant from localized fast radio bursts. | WU Q., ZHANG G.-Q. and WANG F.-Y. | |
2022MNRAS.515.1365C | 47 | X | 1 | 23 | ~ | A MeerKAT, e-MERLIN, H.E.S.S., and Swift search for persistent and transient emission associated with three localized FRBs. | CHIBUEZE J.O., CALEB M., SPITLER L., et al. | ||
2022MNRAS.516...53K | 467 | X C | 9 | 7 | ~ | The sources of apparently non-repeating FRB. | KATZ J.I. | ||
2022MNRAS.516.4862J | 19 | D | 1 | 35 | ~ | A measurement of Hubble's Constant using Fast Radio Bursts. | JAMES C.W., GHOSH E.M., PROCHASKA J.X., et al. | ||
2022A&A...667A..26X | 47 | X | 1 | 16 | ~ | Hints of a universal width-energy relation for classified fast radio bursts. | XIAO D. and DAI Z.-G. | ||
2022ApJ...940L..29Y | 19 | D | 1 | 22 | ~ | Finding the Missing Baryons in the Intergalactic Medium with Localized Fast Radio Bursts. | YANG K.B., WU Q. and WANG F.Y. | ||
2022ApJ...940L..34H | 1073 | A | D | X C | 23 | 12 | ~ | Diverse Properties of Molecular Gas in the Host Galaxies of Fast Radio Bursts. | HATSUKADE B., HASHIMOTO T., NIINO Y., et al. |
2023ApJ...944...50W | 20 | D | 1 | 22 | ~ | An 8.0% Determination of the Baryon Fraction in the Intergalactic Medium from Localized Fast Radio Bursts. | WANG B. and WEI J.-J. |
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