- Complete List of ANTARES documents in inspire-hep
- List of ANTARES papers published in Journals (inspire-hep)
- List of ANTARES contributions to Conferences (inspire-hep)
- ANTARES publications: Citations Summary (inspire-hep)
[107] Results of the follow-up of ANTARES neutrino alerts
A. Albert et al. – JCAP09 (2024) 042 (21 pp.)
[106] Constraints on the energy spectrum of the diffuse cosmic neutrino flux from the ANTARES neutrino telescope neutrino telescope
A. Albert et al. – JCAP08 (2024) 038 (27 pp.)
[105] Searches for Neutrinos in the Direction of Radio-bright Blazars with the ANTARES Telescope
A. Albert et al. – ApJ 964 (2024) 3 (13 pp.)
[104] Studying Bioluminescence Flashes with the ANTARES Deep Sea Neutrino Telescope
N. Reeb et al. – Limnol. Oceanogr. Methods 21 (2023) 734–760 (26 pp.)
[103] Review of the online analyses of multi-messenger alerts and electromagnetic transient events with the ANTARES neutrino telescope
A. Albert et al. – JCAP08 (2023) 072 (7 pp.)
[102] Hint for a TeV neutrino emission from the Galactic Ridge with ANTARES
A. Albert et al. – Phys. Lett. B, Volume 841, (2023) 137951 (7 pp.)
[101] Search for neutrino counterparts to the gravitational wave sources from LIGO/Virgo O3 run with the ANTARES detector
A. Albert et al. – JCAP04 (2023) 004 (19 pp.)
[100] Search for gamma-ray and neutrino coincidences using HAWC and ANTARES data
H.A. Ayala Solares et al. (AMON, ANTARES and HAWC) – ApJ 944 (2023) 166 (9 pp.)
[99] Limits on the nuclearite flux using the ANTARES neutrino telescope
A. Albert et al. – JCAP01 (2023) 012 (21 pp.)
[98] Search for Spatial Correlations of Neutrinos with Ultra-high-energy Cosmic Rays
A. Albert et al. – ApJ 934 n.2 (2022) 164 (21 pp.)
[97] Search for non-standard neutrino interactions with 10 years of ANTARES data
A. Albert et al. – JHEP 2022, 48 (2022) (21 pp.)
[96] Search for Secluded Dark Matter towards the Galactic Center with the ANTARES neutrino telescope
A. Albert et al. – JCAP06 (2022) 028 (20 pp.)
[95] Search for Solar Atmospheric Neutrinos with the ANTARES neutrino telescope
A. Albert et al. – JCAP06 (2022) 018 (16 pp.)
[94] Search for Magnetic Monopoles with ten years of the ANTARES neutrino telescope data
A. Albert et al. – JHEAp 34 (2022) (8 pp.)
[93] Search for neutrinos from the tidal disruption events AT2019dsg and AT2019fdr with the ANTARES telescope
A. Albert et al. – ApJ 920 (2021) 50 (6 pp.)
[92] ANTARES search for point sources of neutrinos using astrophysical catalogs: a likelihood analysis
A. Albert et al. – ApJ 911 (2021) 48 (11 pp)
[91] ANTARES upper limits on the multi-TeV neutrino emission from the GRBs detected by IACTs
A. Albert et al. – PJCAP 03 (2021) 092 (16 pp)
[90] Measurement of the atmospheric nu_e and nu_mu energy spectra with the ANTARES neutrino telescope
A. Albert et al. – Phys. Lett. B 816 (2021) 136228 (7 pp)
[89] Monte Carlo simulations in the ANTARES underwater neutrino telescope
A. Albert et al. – JCAP01 (2021) 064 (19pp)
[88] Constraining the contribution of Gamma-Ray Bursts to the high-energy neutrino flux with ten years of ANTARES
A. Albert et al. – Monthly Notices of the Royal Astronomical Society, Volume 500, Issue 4, 2021 (5614-5628)
[87] Observation of the cosmic ray shadow of the Sun with the ANTARES neutrino telescope
A. Albert et al., Physical Review D 102, 122007 (2020) (Vol. 102, No. 12) (7 pp), PDF file, online version
[86] Combined search for neutrinos from dark matter self-annihilation in the Galactic Center with ANTARES and IceCubeA. Albert et al., Physical Review D 102, 082002 (2020) (Vol. 102, No. 8) (13 pp), PDF file, online version
[85] Search for neutrino counterparts of catalogued gravitational-wave events detected by Advanced-LIGO and Virgo during run O2 with ANTARES
A. Albert et al. – Eur. Phys. J. C 80, 487
[84] Search for dark matter towards the Galactic Centre with 11 years of ANTARES data
A. Albert et al. – Phys. Lett. B 805 135439 (2020)
[83] ANTARES and IceCube Combined Search for Neutrino Point-like and Extended Sources in the Southern Sky
A. Albert et al. – The Astrophysical Journal, 892:92 (2020)
[82] Model-independent search for neutrino sources with the ANTARES neutrino telescope
A. Albert et al. – Astropart. Phys. Vol. 114 (2020) 35-47
[81] A search for Cosmic Neutrino and Gamma-Ray Emitting Transients in 7.3 yr of ANTARES and Fermi LAT Data
A. Albert et al. – The Astrophysical Journal, 886:98 (2019) (8pp)
[80] ANTARES neutrino search for Time and Space correlations with IceCube High-Energy neutrino events
A. Albert et al. – The Astrophysical Journal, 879:108 (2019) (8 pp)
[79] Measuring the Atmospheric Neutrino oscillation parameters and constraining the 3+1 neutrino model with ten years of ANTARES data
A. Albert et al. – J. High Energ. Phys. (2019) 2019:113
[78] Erratum to “Search for Dark Matter in Milky Way with 9 years of data” Phys. Lett. B769 (2017)
A. Albert et al. – Astropart. Phys. Vol. 114 (2020) 35-47
[77] Search for Multi-messenger Sources of Gravitational Waves and High-energy Neutrinos with Advanced LIGO during its first Observing Run, ANTARES and IceCube
A. Albert et al. – Astrophys.J. 870 (2019) no.2, 134
[76] The search for high-energy neutrinos coincident with fast radio bursts with the ANTARES neutrino telescope
A. Albert et al. – Monthly Notices of the Royal Astronomical Society, Volume 482, Issue 1 (2019) 184-193
[75] Joint Constraints on Galactic Diffuse Neutrino Emission from the ANTARES and IceCube Neutrino Telescopes
A. Albert et al. – Astrophys.J. 868 (2018) no.2, L20
[74] The cosmic ray shadow of the Moon observed with the ANTARES neutrino telescope
A. Albert et al. – Eur.Phys.J. C78 (2018) no.12, 1006
[73] Long-term monitoring of the ANTARES optical module efficiencies using 40K decays in sea water
A. Albert et al. – Eur. Phys. J. C (2018) 78:669
[72] The Search for Neutrinos from TXS 0506+056 with the ANTARES Telescope
A. Albert et al. – ApJL 863, L30 (2018)
[71] All-flavor Search for a Diffuse Flux of Cosmic Neutrinos with Nine Years of ANTARES Data
A. Albert et al. – ApJL 853, L7 (2018)
[70] All-sky search for high-energy neutrinos from gravitational wave event GW170104 with the Antares neutrino telescope
A. Albert et al. – Eur. Phys. J. C 77, 911 (2017)
[69] The SUrvey for Pulsars and Extragalactic Radio Bursts II: New FRB discoveries and their follow-up
S. Bhandari et al. – MNRAS 475, 1427–1446 (2018)
[68] Search for High-energy Neutrinos from Binary Neutron Star Merger GW170817 with ANTARES, IceCube, and the Pierre Auger Observatory
A. Albert et al. – ApJL 850 L35 (2017)
[67] Multi-messenger Observations of a Binary Neutron Star Merger
B. P. Abbott et al. – ApJL 848 L12 (2017)
[66] An Algorithm for the Reconstruction of Neutrino-induced Showers in the ANTARES Neutrino Telescope
A.Albert et al. – Astron. J. 154, 275 (2017)
[65] First all-flavor neutrino pointlike source search with the ANTARES neutrino telescope
A.Albert et al. – Phys. Rev. D 96, 082001 (2017)
[64] New constraints on all flavor Galactic diffuse neutrino emission with the ANTARES telescope
A.Albert et al. – Phys. Rev. D 96, 062001 (2017)
[63] Search for relativistic magnetic monopoles with five years of the ANTARES detector data
A.Albert et al. – JHEP 07 (2017) 54
[62] An algorithm for the reconstruction of high-energy neutrino-induced particle showers and its application to the ANTARES neutrino telescope
A.Albert et al. – Eur. Phys. J. C 77 (2017) 419
[61] Search for High-energy Neutrinos from Gravitational Wave Event GW151226 and Candidate LVT151012 with ANTARES and IceCube
A.Albert et al. – Phys. Rev. D 96 (2017) 022005
[60] A polarized fast radio burst at low Galactic latitude
E. Petroff et al. – MNRAS (2017) 469 (4): 4465-4482
[59] Search for Dark Matter Annihilation in the Earth using the ANTARES Neutrino Telescope
A.Albert et al. – Physics of the Dark Universe 16 (2017) 41–48
[58] Time-dependent search for neutrino emission from x-ray binaries with the ANTARES telescope
A.Albert et al. – JCAP04(2017)019
[57] Search for high-energy neutrinos from bright GRBs with ANTARES
A.Albert et al. – MNRAS 469, 906–915 (2017)
[56] Results from the search for dark matter in the Milky Way with 9 years of data of the ANTARES neutrino telescope
A.Albert et al. – Phys. Let. B 769 (2017) 249
[55] Sperm whale long-range echolocation sounds revealed by ANTARES, a deep-sea neutrino telescope
M.André et al. – Journal of Geophysical Research: Oceans
[54] Deep sediment resuspension and thick nepheloid layer generation by open-ocean convection
X. Durrieu de Madron et al. – Journal of Geophysical Research: Oceans
[53] Stacked search for time shifted high energy neutrinos from gamma ray bursts with the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1608.08840
Eur. Phys. J. C (2017) 77:20
[52] Constraints on the neutrino emission from the Galactic Ridge with the ANTARES telescope
S. Adrián-Martínez et al. – see on ArXiV:1602.03036
Physics Letters B 760 (2016) 143
[51] Limits on Dark Matter Annihilation in the Sun using the ANTARES Neutrino Telescope
S. Adrián-Martínez et al. – see on ArXiV:1603.02228
Physics Letters B, Volume 759, 10 August 2016, Pages 69–74
[50] Results of the search for Secluded Dark Matter in the Sun with the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1602.07000
Accepted by JCAP 25th April 2016
[49] High-energy Neutrino follow-up search of Gravitational Wave Event GW150914 with ANTARES and IceCube
S. Adrián-Martínez et al. – see on ArXiV:1602.05411
Phys. Rev. D 93, 122010 (2016)
[48] First combined search for neutrino point-sources in the Southern Hemisphere with the ANTARES and IceCube neutrino telescopes
S. Adrián-Martínez et al. – see on ArXiV:1511.02149
The Astrophysical Journal 823 (2016) 65
[47] Murchison Widefield Array Limits on Radio Emission from ANTARES Neutrino Events
S. Croft et al. – see on ArXiV:1603.02271
Astrophysical Journal 820 (2016) no.2, L24
[46] Optical and X-ray early follow-up of ANTARES neutrino alerts
S. Adrián-Martínez et al. – see on ArXiV:1508.01180
JCAP 02 (2016) 062
[45] Time calibration with atmospheric muon tracks in ANTARES
S. Adrián-Martínez et al. – see on ArXiV:1507.04182
Astroparticle Physics 78 (2016) 43-51
[44] Search for muon neutrino emission from GeV and TeV gamma-ray flaring blazars using 5 years of the ANTARES Telescope
S. Adrián-Martínez et al. – see on ArXiV:1506.07354
JCAP 12 (2015) 014
[43] Search of dark matter annihilation in the galactic centre using the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1505.04866
JCAP 10 (2015) 068
[42] ANTARES constrains a blazar origin of two IceCube PeV neutrino events
S. Adrián-Martínez et al. – see on ArXiV:1502.07843
A&A Lett. 576 (2015) L8
[41] Constraining the neutrino emission of gravitationally lensed Flat Spectrum Radio Quasars with ANTARES data
S. Adrián-Martínez et al. – see on ArXiV:1407.8525
JCAP11 (2014) 017
[40] A search for time dependent neutrino emission from microquasars with the ANTARES telescope
S. Adrián-Martínez et al. – see on ArXiV:1402.1600
Journal of High Energy Astrophysics 3–4(2014) 9-17
[39] Searches for clustering in the time integrated skymap of the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1402.2908
JCAP05 (2014)0001
[38] Searches for Point-like and Extended Neutrino Sources Close to the Galactic Center Using the ANTARES Neutrino Telescope
S. Adrián-Martínez et al. – see on ArXiV:1402.6182
The Astrophysical Journal Letters, 786:L5, 2014
[37] High-frequency internal wave motions at the ANTARES site in the deep Western Mediterranean
Hans van Haren and the ANTARES Collaboration.
Ocean Dynamics 64 (2014)507–517
[36] A search for neutrino emission from the Fermi bubbles with the ANTARES telescope
S. Adrián-Martínez et al. – see on ArXiV:1308.5260
Eur. Phys. J. C (2014) 74:2701
[35] First results on dark matter annihilation in the Sun using the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1302.6516
JCAP11 (2013)032
[34] Measurement of the atmospheric \nu_\mu energy spectrum from 100 GeV to 200 TeV with the ANTARES telescope
S. Adrián-Martínez et al. – see on ArXiV:1308.1599
Eur. Phys. J. C (2013) 73:2606
[33] Search for muon neutrinos from gamma-ray bursts with the ANTARES neutrino telescope using 2008 to 2011 data
S. Adrián-Martínez et al. – see on ArXiV:1307.0304
A&A 559, A9 (2013)
[32] Search for a Correlation between ANTARES Neutrinos and Pierre Auger Observatory UHECRs Arrival Directions
S. Adrián-Martínez et al. – see on ArXiV:1202.6661
ApJ 774 (2013) 19
[31] Deep-Sea Bioluminescence Blooms after Dense Water Formation at the Ocean Surface
C. Tamburini et al.
PLOS ONE 8 (2013) e67523
[30] A first search for coincident gravitational waves and high energy neutrinos using LIGO, Virgo and ANTARES data from 2007
S. Adrián-Martínez et al. – see on ArXiV:1205.3018
JCAP 06 (2013) 006
[29] First search for neutrinos in correlation with gamma-ray bursts with the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1302.6750
JCAP 1303 (2013) 006
[28] Search for cosmic neutrino point sources with four year data of the ANTARES telescope
S. Adrián-Martínez et al. – see on ArXiV:1207.3105
The Astrophysical Journal 760:53(2012)
[27] Measurement of atmospheric neutrino oscillations with the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1206.0645
Phys. Lett. B 714 (2012) 224
[26] The positioning system of the ANTARES Neutrino Telescope
S. Adrián-Martínez et al. – see on ArXiV:1202.3894
JINST 7 T08002
[25] Search for neutrino emission from gamma-ray flaring blazars with the ANTARES telescope
S. Adrián-Martínez et al. – see on ArXiV:1111.3473
Astropart. Phys. 36 (2012) 204–210
[24] Search for relativistic magnetic monopoles with the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1110.2656
Astroparticle Physics 35 (2012) 634–640
[23] Measurement of the group velocity of light in sea water at the ANTARES site
S. Adrián-Martínez et al. – see on ArXiV:1110.5184
Astropart. Phys., 35 (2012), pp.552-557
[22] A method for detection of muon induced electromagnetic showers with the ANTARES detector
J.A. Aguilar et al. – see on ArXiV:1106.0426
Nuclear Inst. and Methods in Physics Research, A (2012), pp. 56-62
[21] First search for point sources of high energy cosmic neutrinos with the ANTARES neutrino telescope
S. Adrián-Martínez et al. – see on ArXiV:1108.0292v1
Astrophysical Journal Letters, 743:L14, 2011 December 10
[20] Acoustic and optical variations during rapid downward motion episodes in the deep north-western Mediterranean Sea
H. van Haren et al.
Deep-Sea Research I 58 (2011) 875–884
[19] The ANTARES telescope neutrino alert system
M. Ageron et al. – see on ArXiV:1103.4477
Astroparticle Physics 35 (2012) 530–536
[18] ANTARES: the first undersea neutrino telescope
J.A. Aguilar et al. – see on ArXiV:1104.1607v1
Nuclear Inst. and Methods in Physics Research, A 656 (2011) pp. 11-38
[17] A fast algorithm for muon track reconstruction and its application to the ANTARES neutrino Telescope
J.A. Aguilar et al. – see on ArXiV:1105.4116
Astroparticle Physics 34 (2011) 652–662
[16] Time Calibration of the ANTARES neutrino Telescope
J.A. Aguilar et al. – see on ArXiV:1012.2204
Astroparticle Physics 34 (2011) 539-549
[15] Search for a diffuse flux of high energy vµ with the ANTARES neutrino telescope
J.A. Aguilar et al. – see on ArXiV:1011.3772
Phys. Letter B 696 (2011) 16-22
[14] AMADEUS – The Acoustic Neutrino Detection Test System of the ANTARES Deep-Sea Neutrino Telescope
J.A. Aguilar et al. – see on ArXiV:1009.4179
Nucl. Instr. and Meth. A 626-627 (2011)128-143
[13] Zenith distribution and flux of atmospheric muons measured with the 5-line ANTARES detector
J.A. Aguilar et al. – see on ArXiV:1007.1777
Astroparticle Physics 34 (2010), pp. 179-184
[12] Performance of the front-end electronics of the ANTARES Neutrino Telescope
J.A. Aguilar et al. – see on ArXiV:1007.2549
Nucl. Instr. and Meth. A 622 (2010) 59-73
[11] Measurement of the atmospheric muon flux with a 4 GeV threshold in the ANTARES neutrino telescope
J.A. Aguilar et al. – see on ArXiV:0910.4843
Astroparticle Physics 33 (2010) pp. 86-90
[erratum published in Astroparticle Physics 34, 3 (2010) pp.185-186]
[10] Performance of the First ANTARES Detector Line
M. Ageron et al. – see on ArXiV:0812.2095
Astroparticle Physics 31, 4 (2009) pp.277-283
[09] Studies of a full scale mechanical prototype line for the ANTARES neutrino telescope and tests of a prototype instrument for deep-sea acoustic measurements
M. Ageron et al.
Nuclear Instruments and Methods in Physics Research A 581(2007) 695-708
[08] The Antares optical beacon system
M. Ageron et al. – see on ArXiV:astro-ph/0703355
Nuclear Instruments and Methods in Physics Research A 578 (2007) 498-509
[07] The data acquisition system for the ANTARES neutrino telescope
J. A. Aguilar et al. – see on ArXiV:astro-ph/0610029
Nuclear Instruments and Methods in Physics Research A 570 (2007) 107-116
[06] First results of the Instrumentation Line for the deep-sea ANTARES neutrino telescope
J. A. Aguilar et al. – see on ArXiV:astro-ph/0606229
Astroparticle Physics 26 (2006) 314
[05] Study of large hemispherical photomultiplier tubes for the ANTARES neutrino telescope
J. A. Aguilar et al.
Nuclear Instruments and Methods in Physics Research A 555 (2005) 132-141 [no arxiv]
[04] Transmission of light in deep sea water at the site of the Antares neutrino telescope
J. A. Aguilar et al. – see on ArXiV:astro-ph/0412126
Astroparticle Physics 23 (2005) 131-155
[03] Sedimentation and Fouling of Optical Surfaces at the ANTARES Site
P.Amram et al. – see on ArXiV:astro-ph/0206454
Astroparticle Physics 19 (2003) 253-267
[02] The ANTARES optical module
P.Amram et al.
Nucl. Instr. and Methods A484 (2002) 369 [.ps.gz]
[01] Background light in potential sites for the ANTARES undersea neutrino telescope
P.Amram et al. – see on ArXiV:astro-ph/9910170
Astroparticle Physics 13 (2000) 127-136
[00] A Deep Sea Telescope for High Energy Neutrinos – Proposal for a 0.1km2 detector by the ANTARES collaboration
May 31st, 1990 – see on ArXiV:astro-ph/9907432
ANTARES collaboration
[Several formats]
[TDR] Technical design report
version 1.0, July 2nd 2001
Get each chapter in pdf format from the following links :
[Introduction] [Mechanics] [Optical modules] [Readout] [Electronics] [Instrumentation] [Infrastructure] [Integration] [Sea Operations]