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author Acharyya, A.
Archer, A.
Bangale, P.
Bartkoske, J.T.
Batista, P.
Baumgart, M.
Benbow, W.
Buckley, J.H.
Falcone, A.
Feng, Q.
Finley, J.P.
Foote, G.M.
Fortson, L.
Furniss, A.
Gallagher, G.
Hanlon, W.F.
Hervet, O.
Hoang, J.
Holder, J.
Humensky, T.B.
Jin, W.
Kaaret, P.
Kertzman, M.
Kherlakian, M.
Kieda, D.
Kleiner, T.K.
Korzoun, N.
Krennrich, F.
Lang, M.J.
Lundy, M.
Maier, G.
McGrath, C.E.
Moriarty, P.
O'Brien, S.
Ong, R.A.
Pfrang, K.
Pohl, M.
Pueschel, E.
Quinn, J.
Ragan, K.
Reynolds, P.T.
Roache, E.
Rodd, N.L.
Ryan, J.L.
Sadeh, I.
Saha, L.
Santander, M.
Sembroski, G.H.
Shang, R.
Splettstoesser, M.
Tak, D.
Tucci, J.V.
Vassiliev, V.V.
Williams, D.A.
author_facet Acharyya, A.
Archer, A.
Bangale, P.
Bartkoske, J.T.
Batista, P.
Baumgart, M.
Benbow, W.
Buckley, J.H.
Falcone, A.
Feng, Q.
Finley, J.P.
Foote, G.M.
Fortson, L.
Furniss, A.
Gallagher, G.
Hanlon, W.F.
Hervet, O.
Hoang, J.
Holder, J.
Humensky, T.B.
Jin, W.
Kaaret, P.
Kertzman, M.
Kherlakian, M.
Kieda, D.
Kleiner, T.K.
Korzoun, N.
Krennrich, F.
Lang, M.J.
Lundy, M.
Maier, G.
McGrath, C.E.
Moriarty, P.
O'Brien, S.
Ong, R.A.
Pfrang, K.
Pohl, M.
Pueschel, E.
Quinn, J.
Ragan, K.
Reynolds, P.T.
Roache, E.
Rodd, N.L.
Ryan, J.L.
Sadeh, I.
Saha, L.
Santander, M.
Sembroski, G.H.
Shang, R.
Splettstoesser, M.
Tak, D.
Tucci, J.V.
Vassiliev, V.V.
Williams, D.A.
author_sort Acharyya, A.
collection CERN
description Dark matter is a key piece of the current cosmological scenario, with weakly interacting massive particles (WIMPs) a leading dark matter candidate. WIMPs have not been detected in their conventional parameter space (100 GeV ≲M $_{χ}$ ≲ 100 TeV), a mass range accessible with current Imaging Atmospheric Cherenkov Telescopes. As ultraheavy dark matter (UHDM; M $_{χ}$ ≳ 100 TeV) has been suggested as an underexplored alternative to the WIMP paradigm, we search for an indirect dark matter annihilation signal in a higher mass range (up to 30 PeV) with the VERITAS γ-ray observatory. With 216 hr of observations of four dwarf spheroidal galaxies, we perform an unbinned likelihood analysis. We find no evidence of a γ-ray signal from UHDM annihilation above the background fluctuation for any individual dwarf galaxy nor for a joint-fit analysis, and consequently constrain the velocity-weighted annihilation cross section of UHDM for dark matter particle masses between 1 TeV and 30 PeV. We additionally set constraints on the allowed radius of a composite UHDM particle.
id cern-2850577
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28505772023-06-28T03:54:10Zdoi:10.3847/1538-4357/acbc7bhttp://cds.cern.ch/record/2850577engAcharyya, A.Archer, A.Bangale, P.Bartkoske, J.T.Batista, P.Baumgart, M.Benbow, W.Buckley, J.H.Falcone, A.Feng, Q.Finley, J.P.Foote, G.M.Fortson, L.Furniss, A.Gallagher, G.Hanlon, W.F.Hervet, O.Hoang, J.Holder, J.Humensky, T.B.Jin, W.Kaaret, P.Kertzman, M.Kherlakian, M.Kieda, D.Kleiner, T.K.Korzoun, N.Krennrich, F.Lang, M.J.Lundy, M.Maier, G.McGrath, C.E.Moriarty, P.O'Brien, S.Ong, R.A.Pfrang, K.Pohl, M.Pueschel, E.Quinn, J.Ragan, K.Reynolds, P.T.Roache, E.Rodd, N.L.Ryan, J.L.Sadeh, I.Saha, L.Santander, M.Sembroski, G.H.Shang, R.Splettstoesser, M.Tak, D.Tucci, J.V.Vassiliev, V.V.Williams, D.A.Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAShep-phParticle Physics - Phenomenologyhep-exParticle Physics - Experimentastro-ph.COAstrophysics and Astronomyastro-ph.HEAstrophysics and AstronomyDark matter is a key piece of the current cosmological scenario, with weakly interacting massive particles (WIMPs) a leading dark matter candidate. WIMPs have not been detected in their conventional parameter space (100 GeV ≲M $_{χ}$ ≲ 100 TeV), a mass range accessible with current Imaging Atmospheric Cherenkov Telescopes. As ultraheavy dark matter (UHDM; M $_{χ}$ ≳ 100 TeV) has been suggested as an underexplored alternative to the WIMP paradigm, we search for an indirect dark matter annihilation signal in a higher mass range (up to 30 PeV) with the VERITAS γ-ray observatory. With 216 hr of observations of four dwarf spheroidal galaxies, we perform an unbinned likelihood analysis. We find no evidence of a γ-ray signal from UHDM annihilation above the background fluctuation for any individual dwarf galaxy nor for a joint-fit analysis, and consequently constrain the velocity-weighted annihilation cross section of UHDM for dark matter particle masses between 1 TeV and 30 PeV. We additionally set constraints on the allowed radius of a composite UHDM particle.Dark matter is a key piece of the current cosmological scenario, with weakly interacting massive particles (WIMPs) a leading dark matter candidate. WIMPs have not been detected in their conventional parameter space (100 GeV $\lesssim M_{\chi} \lesssim$ 100 TeV), a mass range accessible with current Imaging Atmospheric Cherenkov Telescopes. As ultraheavy dark matter (UHDM; $M_{\chi} \gtrsim$ 100 TeV) has been suggested as an under-explored alternative to the WIMP paradigm, we search for an indirect dark matter annihilation signal in a higher mass range (up to 30 PeV) with the VERITAS gamma-ray observatory. With 216 hours of observations of four dwarf spheroidal galaxies, we perform an unbinned likelihood analysis. We find no evidence of a $\gamma$-ray signal from UHDM annihilation above the background fluctuation for any individual dwarf galaxy nor for a joint-fit analysis, and consequently constrain the velocity-weighted annihilation cross section of UHDM for dark matter particle masses between 1 TeV and 30 PeV. We additionally set constraints on the allowed radius of a composite UHDM particle.arXiv:2302.08784oai:cds.cern.ch:28505772023-02-17
spellingShingle hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
astro-ph.CO
Astrophysics and Astronomy
astro-ph.HE
Astrophysics and Astronomy
Acharyya, A.
Archer, A.
Bangale, P.
Bartkoske, J.T.
Batista, P.
Baumgart, M.
Benbow, W.
Buckley, J.H.
Falcone, A.
Feng, Q.
Finley, J.P.
Foote, G.M.
Fortson, L.
Furniss, A.
Gallagher, G.
Hanlon, W.F.
Hervet, O.
Hoang, J.
Holder, J.
Humensky, T.B.
Jin, W.
Kaaret, P.
Kertzman, M.
Kherlakian, M.
Kieda, D.
Kleiner, T.K.
Korzoun, N.
Krennrich, F.
Lang, M.J.
Lundy, M.
Maier, G.
McGrath, C.E.
Moriarty, P.
O'Brien, S.
Ong, R.A.
Pfrang, K.
Pohl, M.
Pueschel, E.
Quinn, J.
Ragan, K.
Reynolds, P.T.
Roache, E.
Rodd, N.L.
Ryan, J.L.
Sadeh, I.
Saha, L.
Santander, M.
Sembroski, G.H.
Shang, R.
Splettstoesser, M.
Tak, D.
Tucci, J.V.
Vassiliev, V.V.
Williams, D.A.
Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAS
title Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAS
title_full Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAS
title_fullStr Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAS
title_full_unstemmed Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAS
title_short Search for Ultraheavy Dark Matter from Observations of Dwarf Spheroidal Galaxies with VERITAS
title_sort search for ultraheavy dark matter from observations of dwarf spheroidal galaxies with veritas
topic hep-ph
Particle Physics - Phenomenology
hep-ex
Particle Physics - Experiment
astro-ph.CO
Astrophysics and Astronomy
astro-ph.HE
Astrophysics and Astronomy
url https://dx.doi.org/10.3847/1538-4357/acbc7b
http://cds.cern.ch/record/2850577
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