Fetching the paper…
Reading the bibliography…
We investigate the capability of the Probe Of Extreme Multi-Messenger Astrophysics (POEMMA) in performing Target-of-Opportunity (ToO) neutrino observations.
1901
Earlier work this paper cites.
1901
Earlier work this paper cites.
1902
Earlier work this paper cites.
1903
Earlier work this paper cites.
1903
Earlier work this paper cites.
1903
Earlier work this paper cites.
1903
Earlier work this paper cites.
1904
Earlier work this paper cites.
1904
Earlier work this paper cites.
1904
Earlier work this paper cites.
1905
Earlier work this paper cites.
1905
Earlier work this paper cites.
1905
Earlier work this paper cites.
1905
Earlier work this paper cites.
1905
Earlier work this paper cites.
1910
Earlier work this paper cites.
J. E. Gunn and J. P. Ostriker, “Acceleration of high-energy cosmic rays by pulsars,” Phys. Rev. Lett
1969
Earlier work this paper cites.
J. G. Hills, “Possible power source of Seyfert galaxies and QSOs,” Nature
1975
Earlier work this paper cites.
R. D. Blandford and R. L. Znajek, “Electromagnetic extractions of energy from Kerr black holes,” Mon. Not. Roy. Astron. Soc
1977
Earlier work this paper cites.
S. H. Margolis, D. N. Schramm, and R. Silberberg, “Ultrahigh-energy neutrino astronomy.,” ApJ
1978
Earlier work this paper cites.
D. Eichler, “High-energy neutrino astronomy: a probe of galactic nuclei?,” ApJ
1979
Earlier work this paper cites.
A. M. Hillas, “The sensitivity of Cerenkov radiation pulses to the longitudinal development of cosmic-ray showers,” Journal of Physics G Nuclear Physics
1982
Earlier work this paper cites.
A. M. Hillas, “Angular and energy distributions of charged particles in electron-photon cascades in air,” Journal of Physics G Nuclear Physics
1982
Earlier work this paper cites.
J. R. Patterson and A. M. Hillas, “The relation of the lateral distribution of Cerenkov light from cosmic-ray showers to the distance of maximum development,” Journal of Physics G Nuclear Physics
1983
Earlier work this paper cites.
J. R. Patterson and A. M. Hillas, “The relation of Cerenkov time profile widths to the distance to maximum of air showers,” Journal of Physics G Nuclear Physics
1983
Earlier work this paper cites.
W. P. Chu, “Calculations of atmospheric refraction for spacecraft remote-sensing applications,” Appl. Opt
1983
Earlier work this paper cites.
A. M. Hillas, “The Origin of Ultra-High-Energy Cosmic Rays,” Ann. Rev. Astron. & Astrophys
1984
Earlier work this paper cites.
B. Paczynski, “Gamma-ray bursters at cosmological distances,” ApJL
1986
Earlier work this paper cites.
J. Goodman, “Are gamma-ray bursts optically thick?,” ApJL
1986
Earlier work this paper cites.
P. L. Biermann and P. A. Strittmatter, “Synchrotron emission from shock waves in active galactic nuclei,” Astrophys. J
1987
Earlier work this paper cites.
M. J. Rees, “Tidal disruption of stars by black holes of 10 6
1988
Earlier work this paper cites.
T. Stanev and H. P. Vankov, “Air Shower Detection of Ultrahigh-energy Muons and Neutrinos,” Phys. Rev
1989
Earlier work this paper cites.
K. Mannheim and P. L. Biermann, “Photomeson production in active galactic nuclei.,” Astron. & Astrophys
1989
Earlier work this paper cites.
M. C. Begelman, B. Rudak, and M. Sikora, “Consequences of Relativistic Proton Injection in Active Galactic Nuclei,” ApJ
1990
Earlier work this paper cites.
A. Shemi and T. Piran, “The appearance of cosmic fireballs,” ApJL
1990
Earlier work this paper cites.
H. Abramowicz, E. M. Levin, A. Levy, and U. Maor, “A Parametrization of sigma-T (gamma* p) above the resonance region Q**2 ¿= 0,” Phys. Lett
1991
Earlier work this paper cites.
F. W. Stecker, C. Done, M. H. Salamon, and P. Sommers, “High-energy neutrinos from active galactic nuclei,” Phys. Rev. Lett
1991
Earlier work this paper cites.
A. R. Bell, “Cosmic ray acceleration in pulsar-driven supernova remnants.,” MNRAS
1992
Earlier work this paper cites.
R. J. Protheroe and A. P. Szabo, “High energy cosmic rays from active galactic nuclei,” Phys. Rev. Lett
1992
Earlier work this paper cites.
P. Meszaros and M. J. Rees, “Relativistic fireballs and their impact on external matter - Models for cosmological gamma-ray bursts,” ApJ
1993
Earlier work this paper cites.
A. P. Szabo and R. J. Protheroe, “Implications of particle acceleration in active galactic nuclei for cosmic rays and high energy neutrino astronomy,” Astroparticle Physics
1994
Earlier work this paper cites.
J. G. Learned and S. Pakvasa, “Detecting tau-neutrino oscillations at PeV energies,” Astropart. Phys
1995
Earlier work this paper cites.
E. Waxman, “Cosmological gamma-ray bursts and the highest energy cosmic rays,” Phys. Rev. Lett
1995
Earlier work this paper cites.
M. Vietri, “On the acceleration of ultrahigh-energy cosmic rays in gamma-ray bursts,” Astrophys. J
1995
Earlier work this paper cites.
D. J. Fixsen, E. S. Cheng, J. M. Gales, J. C. Mather, R. A. Shafer, and E. L. Wright, “The Cosmic Microwave Background spectrum from the full COBE FIRAS data set,” Astrophys. J
1996
Earlier work this paper cites.
E. Waxman and J. N. Bahcall, “High-energy neutrinos from cosmological gamma-ray burst fireballs,” Phys. Rev. Lett
1997
Earlier work this paper cites.
R. Gandhi, C. Quigg, M. H. Reno, and I. Sarcevic, “Neutrino interactions at ultrahigh-energies,” Phys. Rev
1998
Earlier work this paper cites.
G. Domokos and S. Kovesi-Domokos, “Observation of UHE interactions neutrinos from outer space,” arXiv:hep-ph/9801362 [hep-ph] . [AIP Conf. Proc.433,390(1998)]
1998
Earlier work this paper cites.
F. Halzen and D. Saltzberg, “Tau-neutrino appearance with a 1000 megaparsec baseline,” Phys. Rev. Lett
1998
Earlier work this paper cites.
G. J. Feldman and R. D. Cousins, “A Unified approach to the classical statistical analysis of small signals,” Phys. Rev
1998
Earlier work this paper cites.
Jan., 1999
J. A. Peacock, Cosmological Physics · 1999
Earlier work this paper cites.
S. S. Kim, M.-G. Park, and H. M. Lee, “The Stream-Stream Collision after the Tidal Disruption of a Star around a Massive Black Hole,” ApJ
1999
Earlier work this paper cites.
J. Magorrian and S. Tremaine, “Rates of tidal disruption of stars by massive central black holes,” Mon. Not. Roy. Astron. Soc
1999
Earlier work this paper cites.
S. I. Dutta, M. H. Reno, and I. Sarcevic, “Tau neutrinos underground: Signals of muon-neutrino → \to tau neutrino oscillations with extragalactic neutrinos,” Phys. Rev
2000
Earlier work this paper cites.
P. Blasi, R. I. Epstein, and A. V. Olinto, “Ultrahigh-energy cosmic rays from young neutron star winds,” Astrophys. J
2000
Earlier work this paper cites.
F. Becattini and S. Bottai, “Extreme energy neutrino(tau) propagation through the Earth,” Astropart. Phys
2001
Earlier work this paper cites.
A. Atoyan and C. D. Dermer, “High-Energy Neutrinos from Photomeson Processes in Blazars,” Phys. Rev. Lett
2001
Earlier work this paper cites.
D. Fargion, “Discovering Ultra High Energy Neutrinos by Horizontal and Upward tau Air-Showers: Evidences in Terrestrial Gamma Flashes?,” Astrophys. J
2002
Earlier work this paper cites.
X. Bertou, P. Billoir, O. Deligny, C. Lachaud, and A. Letessier-Selvon, “Tau neutrinos in the Auger Observatory: A New window to UHECR sources,” Astropart. Phys
2002
Earlier work this paper cites.
J. L. Feng, P. Fisher, F. Wilczek, and T. M. Yu, “Observability of earth skimming ultrahigh-energy neutrinos,” Phys. Rev. Lett
2002
Earlier work this paper cites.
C. Lachaud, X. Bertou, P. Billoir, O. Deligny, and A. Letessier-Selvon, “Probing the GZK barrier with UHE tau neutrinos,” Nucl. Phys. Proc. Suppl
2002
Earlier work this paper cites.
J. F. Beacom, P. Crotty, and E. W. Kolb, “Enhanced signal of astrophysical tau neutrinos propagating through earth,” Phys. Rev
2002
Earlier work this paper cites.
L. A. Anchordoqui, J. L. Feng, H. Goldberg, and A. D. Shapere, “Neutrino bounds on astrophysical sources and new physics,” Phys. Rev
2002
Earlier work this paper cites.
J. L. Donley, W. N. Brandt, M. C. Eracleous, and T. Boller, “Large-amplitude x-ray outbursts from galactic nuclei: A Systematic survey using ROSAT archival data,” Astron. J
2002
Earlier work this paper cites.
R. W. Hanuschik, “A flux-calibrated, high-resolution atlas of optical sky emission from UVES,” Astronomy and Astrophysics
2003
Earlier work this paper cites.
M. Cohen, W. A. Wheaton, and S. T. Megeath, “Spectral irradiance calibration in the infrared. 14: The Absolute calibration of 2MASS,” Astron. J
2003
Earlier work this paper cites.
E. F. Bell, D. H. McIntosh, N. Katz, and M. D. Weinberg, “The optical and near-infrared properties of galaxies. 1. Luminosity and stellar mass functions,” Astrophys. J. Suppl
2003
Earlier work this paper cites.
J. Arons, “Magnetars in the Metagalaxy: An Origin for Ultra-High-Energy Cosmic Rays in the Nearby Universe,” ApJ
2003
Earlier work this paper cites.
A. Mücke, R. J. Protheroe, R. Engel, J. P. Rachen, and T. Stanev, “BL Lac objects in the synchrotron proton blazar model,” Astroparticle Physics
2003
Earlier work this paper cites.
D. Fargion, P. De Sanctis Lucentini, and M. De Santis, “Tau air showers from earth,” Astrophys. J
2004
Earlier work this paper cites.
D. Guetta, D. Hooper, J. Alvarez-Muniz, F. Halzen, and E. Reuveni, “Neutrinos from individual gamma-ray bursts in the BATSE catalog,” Astropart. Phys
2004
Cited alongside, same era.
C. Aramo, A. Insolia, A. Leonardi, G. Miele, L. Perrone, O. Pisanti, and D. V. Semikoz, “Earth-skimming UHE Tau neutrinos at the fluorescence detector of Pierre Auger observatory,” Astropart. Phys
2005
Cited alongside, same era.
2005
Cited alongside, same era.
K. Ohsuga, M. Mori, T. Nakamoto, and S. Mineshige, “Supercritical Accretion Flows around Black Holes: Two-dimensional, Radiation Pressure-dominated Disks with Photon Trapping,” ApJ
2005
Cited alongside, same era.
S. Palomares-Ruiz, A. Irimia, and T. J. Weiler, “Acceptances for space-based and ground-based fluorescence detectors, and inference of the neutrino-nucleon cross-section above 10 1 9 10^{1}9 -ev,” Phys. Rev
2016
Later among the works it cites.
2016
Later among the works it cites.
2016
Later among the works it cites.
A. Loeb, “Electromagnetic Counterparts to Black Hole Mergers Detected by LIGO,” Astrophys. J
2016
Later among the works it cites.
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
2006
Cited alongside, same era.
P. C. Cosby et al
2006
Cited alongside, same era.
M. F. Skrutskie et al
2006
Cited alongside, same era.
2006
Cited alongside, same era.
2006
Cited alongside, same era.
K. Murase and S. Nagataki, “High Energy Neutrino Flash from Far-UV/X-ray Flares of Gamma-Ray Bursts,” Phys. Rev. Lett
2006
Cited alongside, same era.
C. D. Dermer and A. Atoyan, “Ultrahigh energy cosmic rays, cascade gamma-rays, and high-energy neutrinos from gamma-ray bursts,” New J. Phys
2006
Cited alongside, same era.
K. Murase, “High energy neutrino early afterglows gamma-ray bursts revisited,” Phys. Rev
2007
Cited alongside, same era.
2016
Later among the works it cites.
2016
Later among the works it cites.
S. E. Woosley, “The Progenitor of Gw150914,” Astrophys. J
2016
Later among the works it cites.
2016
Later among the works it cites.
2016
Later among the works it cites.
2016
Later among the works it cites.
L. A. Anchordoqui, “Neutrino lighthouse powered by Sagittarius A* disk dynamo,” Phys. Rev
2016
Later among the works it cites.
2016
Later among the works it cites.
2016
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
C. Lunardini and W. Winter, “High Energy Neutrinos from the Tidal Disruption of Stars,” Phys. Rev
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
ANTARES, IceCube, Pierre Auger, LIGO Scientific, Virgo
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
V. M. Kaspi and A. Beloborodov, “Magnetars,” Ann. Rev. Astron. Astrophys
2017
Later among the works it cites.
LIGO Scientific, Virgo, Fermi-GBM, INTEGRAL
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2017
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
Particle Data Group
2018
Later among the works it cites.
Telescope Array
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2018
Later among the works it cites.
2019
Closest in time.
Accessed: 2019-05-19
A. V. Olinto et al · 2019
Closest in time.
2019
Closest in time.
M. H. Reno, J. F. Krizmanic, and T. M. Venters, “Cosmic tau neutrino detection via cherenkov signals from air showers from earth-emerging taus,” Phys. Rev. D
2019
Closest in time.
L. A. Anchordoqui, “Ultra-High-Energy Cosmic Rays,” Phys. Rep
2019
Closest in time.
2019
Closest in time.
2019
Closest in time.
2019
Closest in time.
B. Chauhan and S. Mohanty, “Leptoquark solution for both the flavor and ANITA anomalies,” Phys. Rev
2019
Closest in time.
2019
Closest in time.
2019
Closest in time.
2019
Closest in time.
2019
Closest in time.
L. A. Anchordoqui, D. R. Bergman, M. E. Bertaina, F. Fenu, J. F. Krizmanic, A. Liberatore, A. V. Olinto, M. H. Reno, F. Sarazin, K. Shinozaki, J. F. Soriano, R. Ulrich, M. Unger, T. M. Venters, and L. Wiencke, “Performance and science reach of the probe of extreme multimessenger astrophysics for ultrahigh-energy particles,” Phys. Rev. D
2020
Closest in time.
V. Scotti, G. Osteria, and JEM-EUSO Collaboration, “The EUSO-SPB2 mission,” Nuclear Instruments and Methods in Physics Research A
2020
Closest in time.