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FRB 121002 , the SIMBAD biblio (54 results) | C.D.S. - SIMBAD4 rel 1.8 - 2024.04.20CEST07:59:30 |
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 |
---|---|---|---|---|---|---|---|---|---|
2015MNRAS.454..457P | 18 | D | 2 | 11 | 59 | A survey of FRB fields: limits on repeatability. | PETROFF E., JOHNSTON S., KEANE E.F., et al. | ||
2016MNRAS.457.2530B | 16 | D | 1 | 16 | 13 | On modelling the Fast Radio Burst population and event rate predictions. | BERA A., BHATTACHARYYA S., BHARADWAJ S., et al. | ||
2016MNRAS.458..708C | 45 | X | 1 | 8 | 47 | Are the distributions of fast radio burst properties consistent with a cosmological population? | CALEB M., FLYNN C., BAILES M., et al. | ||
2016MNRAS.458..718C | 4 | 13 | 53 | Fast Radio Transient searches with UTMOST at 843 MHz. | CALEB M., FLYNN C., BAILES M., et al. | ||||
2016ApJ...826..226K | 62 | X | 1 | 7 | 156 | How soft gamma repeaters might make fast radio bursts. | KATZ J.I. | ||
2016MNRAS.459.1360K | 80 | C | 1 | 24 | 9 | Classifying RRATs and FRBs. | KEANE E.F. | ||
2016MNRAS.460L..30C | 622 | A | D | X C | 15 | 13 | 261 | Five new fast radio bursts from the HTRU high-latitude survey at Parkes: first evidence for two-component bursts. | CHAMPION D.J., PETROFF E., KRAMER M., et al. |
2016ApJ...827...59T | 98 | D | X | 3 | 24 | 49 | Radio nondetection of the SGR 1806-20 giant flare and implications for fast radio bursts. | TENDULKAR S.P., KASPI V.M. and PATEL C. | |
2016MNRAS.461..984O | 18 | D | 1 | 15 | 36 | The Euclidean distribution of fast radio bursts. | OPPERMANN N., CONNOR L.D. and PEN U.-L. | ||
2016MNRAS.461.1498M | 27 | D | 1 | 17 | 193 | A burst in a wind bubble and the impact on baryonic ejecta: high-energy gamma-ray flashes and afterglows from fast radio bursts and pulsar-driven supernova remnants. | MURASE K., KASHIYAMA K. and MESZAROS P. | ||
2016ApJ...832L...1D | 57 | D | X | 2 | 35 | 42 | Discovery of a transient gamma-ray counterpart to FRB 131104. | DELAUNAY J.J., FOX D.B., MURASE K., et al. | |
2017ApJ...835...29Y | 59 | D | X | 2 | 301 | 678 | A new electron-density model for estimation of pulsar and FRB distances. | YAO J.M., MANCHESTER R.N. and WANG N. | |
2017ApJ...835L..21G | 42 | X | 1 | 6 | 7 | Implications from the upper limit of radio afterglow emission of FRB 131104/Swift J0644.5-5111. | GAO H. and ZHANG B. | ||
2017MNRAS.465.2286R | 44 | X | 1 | 3 | 10 | Detecting fast radio bursts at decametric wavelengths. | RAJWADE K.M. and LORIMER D.R. | ||
2017A&A...598A..88Z | 81 | C | 1 | 20 | 3 | Pulsar magnetospheric convulsions induced by an external magnetic field. | ZHANG F. | ||
2017ApJ...842L...8X | 16 | D | 1 | 33 | 9 | Search for GeV counterparts to fast radio bursts with Fermi. | XI S.-Q., TAM P.-H.T., PENG F.-K., et al. | ||
2017RAA....17....6L | 18 | D | 1 | 17 | 34 | Intensity distribution function and statistical properties of fast radio bursts. | LI L.-B., HUANG Y.-F., ZHANG Z.-B., et al. | ||
2017RAA....17...14C | 16 | D | 1 | 16 | 4 | Modeling the redshift and energy distributions of fast radio bursts. | CAO X.-F., XIAO M. and XIAO F. | ||
2017MNRAS.468.2726K | 78 | X | 1 | 5 | 187 | Fast radio burst source properties and curvature radiation model. | KUMAR P., LU W. and BHATTACHARYA M. | ||
2018ApJ...852L..11S | 16 | D | 1 | 25 | 16 | The dispersion of fast radio bursts from a structured intergalactic medium at redshifts z < 1.5. | SHULL J.M. and DANFORTH C.W. | ||
2018ApJ...854L..12P | 17 | D | 1 | 22 | 41 | Are there multiple populations of fast radio bursts? | PALANISWAMY D., LI Y. and ZHANG B. | ||
2018MNRAS.474.1900M | 17 | D | 1 | 19 | 36 | Fast radio burst event rate counts - I. Interpreting the observations. | MACQUART J.-P. and EKERS R.D. | ||
2018ApJ...857..117A | 99 | D | C | 3 | 13 | 8 | A search for neutrino emission from fast radio bursts with six years of IceCube data. | AARTSEN M.G., ACKERMANN M., ADAMS J., et al. | |
2018MNRAS.477.4052S | 58 | D | X | 2 | 27 | ~ | Blind detection of isolated astrophysical pulses in the spatial Fourier transform domain. | SCHMID N.A. and PRESTAGE R.M. | |
2018MNRAS.478.1209F | 52 | X | 1 | 10 | 113 | FRB microstructure revealed by the real-time detection of FRB170827. | FARAH W., FLYNN C., BAILES M., et al. | ||
2018ApJ...864..117M | 42 | X | 1 | 3 | 3 | Electromagnetic emission from blitzars and its impact on non-repeating fast radio bursts. | MOST E.R., NATHANAIL A. and REZZOLLA L. | ||
2018ApJ...867L..21Z | 18 | D | 1 | 35 | 103 | Fast radio burst energetics and detectability from high redshifts. | ZHANG B. | ||
2018ApJ...868...17A | 44 | X | 1 | 3 | 10 | Collisions of neutron stars with primordial black holes as fast radio bursts engines. | ABRAMOWICZ M.A., BEJGER M. and WIELGUS M. | ||
2018MNRAS.481.2320L | 18 | D | 1 | 34 | 92 | On the normalized FRB luminosity function. | LUO R., LEE K., LORIMER D.R., et al. | ||
2019MNRAS.483.1342J | 17 | D | 1 | 49 | 18 | The slope of the source-count distribution for fast radio bursts. | JAMES C.W., EKERS R.D., MACQUART J.-P., et al. | ||
2019MNRAS.482.1966R | 169 | X F | 3 | 20 | 57 | The observed properties of fast radio bursts. | RAVI V. | ||
2019ApJ...876L..23H | 69 | X | 1 | 9 | 245 | FRB 121102 bursts show complex time-frequency structure. | HESSELS J.W.T., SPITLER L.G., SEYMOUR A.D., et al. | ||
2019A&A...625A.109L | 17 | D | 2 | 43 | 6 | The luminosity-volume test for cosmological fast radio bursts. | LOCATELLI N., RONCHI M., GHIRLANDA G., et al. | ||
2019ApJ...879...40C | 17 | D | 1 | 30 | 9 | A search for high-energy counterparts to fast radio bursts. | CUNNINGHAM V., CENKO S.B., BURNS E., et al. | ||
2019A&A...631A..62M | 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. | |||||
2020ApJ...890..111A | 17 | D | 2 | 30 | ~ | A search for MeV to TeV neutrinos from fast radio bursts with IceCube. | AARTSEN M.G., ACKERMANN M., ADAMS J., et al. | ||
2020MNRAS.494..665L | 18 | D | 1 | 46 | 80 | On the FRB luminosity function - - II. Event rate density. | LUO R., MEN Y., LEE K., et al. | ||
2020ApJ...896L..11L | 213 | X C | 4 | 8 | ~ | Constraints on compact dark matter with fast radio burst observations. | LIAO K., ZHANG S.-B., LI Z., et al. | ||
2020A&A...638A..37W | 17 | D | 1 | 72 | 28 | Constraining the redshifts of unlocalised fast radio bursts. | WALKER C.R.H., MA Y.-Z. and BRETON R.P. | ||
2020ApJ...899..124B | 17 | D | 2 | 27 | ~ | Population modeling of Fast Radio Bursts from source properties. | BHATTACHARYA M. and KUMAR P. | ||
2020MNRAS.498.3927H | 17 | D | 2 | 48 | 28 | No redshift evolution of non-repeating fast radio burst rates. | HASHIMOTO T., GOTO T., ON A.Y.L., et al. | ||
2020MNRAS.498.4811H | 17 | D | 1 | 43 | ~ | Redshift estimates for fast radio bursts and implications on intergalactic magnetic fields. | HACKSTEIN S., BRUGGEN M., VAZZA F., et al. | ||
2021MNRAS.500..272S | 46 | X | 1 | 7 | 15 | Self-modulation of fast radio bursts. | SOBACCHI E., LYUBARSKY Y., BELOBORODOV A.M., et al. | ||
2021MNRAS.501.5319A | 17 | D | 1 | 49 | ~ | The fast radio burst dispersion measure distribution. | ARCUS W.R., MACQUART J.-P., SAMMONS M.W., et al. | ||
2020RAA....20...27O | 43 | X | 1 | 56 | ~ | A quark nova in the wake of a core-collapse supernova: a unifying model for long duration gamma-ray bursts and fast radio bursts. | OUYED R., LEAHY D. and KONING N. | ||
2021ApJ...912..134C | 374 | A | X C | 8 | 3 | ~ | FRBs lensed by point masses I. Lens mass estimation for doubly imaged FRBs. | CHEN X., SHU Y., ZHENG W., et al. | |
2021MNRAS.505.5356B | 44 | X | 1 | 14 | 6 | The cosmic dispersion measure in the EAGLE simulations. | BATTEN A.J., DUFFY A.R., WIJERS N.A., et al. | ||
2021ApJ...915..102V | 17 | D | 1 | 91 | ~ | AGILE observations of fast radio bursts. | VERRECCHIA F., CASENTINI C., TAVANI M., et al. | ||
2016PASA...33...45P | 20 | D | 1 | 108 | 472 | FRBCAT: The Fast Radio Burst Catalogue. | PETROFF E., BARR E.D., JAMESON A., et al. | ||
2021RAA....21..211C | 17 | D | 1 | 33 | ~ | Statistical properties of fast radio bursts elucidate their origins: magnetars are favored over gamma-ray bursts. | CUI X.-H., ZHANG C.-M., WANG S.-Q., et al. | ||
2022MNRAS.509.4775J | 18 | D | 1 | 54 | 52 | The z-DM distribution of fast radio bursts. | JAMES C.W., PROCHASKA J.X., MACQUART J.-P., et al. | ||
2022ApJ...928..124Z | 45 | X | 1 | 37 | 17 | Search for Lensing Signatures from the Latest Fast Radio Burst Observations and Constraints on the Abundance of Primordial Black Holes. | ZHOU H., LI Z., LIAO K., et al. | ||
2022ApJ...930..172L | 108 | D | C | 1 | 30 | 6 | Simultaneous View of FRB 180301 with FAST and NICER during a Bursting Phase. | LAHA S., YOUNES G., WADIASINGH Z., et al. | |
2023ApJS..269...17H | 47 | X | 1 | 32 | ~ | A Comprehensive Analysis of Repeating Fast Radio Bursts. | HU C.-R. and HUANG Y.-F. |