6533b82efe1ef96bd1293277
RESEARCH PRODUCT
Observation of inclined EeV air showers with the radio detector of the Pierre Auger Observatory
The Pierre Auger CollaborationA. AabP. AbreuM. AgliettaI. F. M. AlbuquerqueJ. M. AlburyI. AllekotteA. AlmelaJ. Alvarez CastilloJ. Alvarez-muñizG. A. AnastasiL. AnchordoquiB. AndradaS. AndringaC. AramoN. ArseneH. AsoreyP. AssisG. AvilaA. M. BadescuA. BalaceanuF. BarbatoR. J. Barreira LuzS. BaurK. H. BeckerJ. A. BellidoC. BeratM. E. BertainaX. BertouP. L. BiermannJ. BiteauS. G. BlaessA. BlancoJ. BlazekC. BleveM. BoháčováC. BonifaziN. BorodaiA. M. BottiJ. BrackT. BretzA. BridgemanF. L. BriechleP. BuchholzA. BuenoS. BuitinkM. BuscemiK. S. Caballero-moraL. CaccianigaL. CalcagniA. CancioF. CanforaJ. M. CarcellerR. CarusoA. CastellinaF. CatalaniG. CataldiL. CazonJ. A. ChinellatoJ. ChudobaL. ChytkaR. W. ClayA. C. Cobos CeruttiR. ColalilloA. ColemanL. CollicaM. R. ColucciaR. ConceiçãoG. ConsolatiF. ContrerasM. J. CooperS. CoutuC. E. CovaultS. D'amicoB. DanielS. DassoK. DaumillerB. R. DawsonJ. A. DayR. M. De AlmeidaS. J. De JongG. De MauroJ. R. T. De Mello NetoI. De MitriJ. De OliveiraV. De SouzaJ. DebatinO. DelignyN. DhitalM. L. Díaz CastroF. DiogoC. DobrigkeitJ. C. D'olivoQ. DorostiR. C. Dos AnjosM. T. DovaA. DundovicJ. EbrR. EngelM. ErdmannC. O. EscobarA. EtchegoyenH. FalckeJ. FarmerG. FarrarA. C. FauthN. FazziniF. FeldbuschF. FenuL. P. FerreyroB. FickJ. M. FigueiraA. FilipčičM. M. FreireT. FujiiA. FusterR. GaïorB. GarcíaH. GemmekeA. Gherghel-lascuP. L. GhiaU. GiaccariM. GiammarchiM. GillerD. GłasC. GlaserJ. GlombitzaG. GolupM. Gómez BerissoP. F. Gómez VitaleN. GonzálezI. GoosD. GóraA. GorgiM. GottowikT. D. GrubbF. GuarinoG. P. GuedesE. GuidoR. HallidayM. R. HampelP. HansenD. HarariT. A. HarrisonV. M. HarveyA. HaungsT. HebbekerD. HeckP. HeimannG. C. HillC. HojvatE. M. HoltP. HomolaJ. R. HörandelP. HorvathM. HrabovskýT. HuegeJ. HulsmanA. InsoliaP. G. IsarI. JandtJ. A. JohnsenM. JosebachuiliJ. JurysekA. KääpäO. KambeitzK. H. KampertB. KeilhauerN. KemmerichJ. KempH. O. KlagesM. KleifgesJ. KleinfellerR. KrauseD. KuempelG. Kukec MezekN. KunkaA. Kuotb AwadB. L. LagoD. LahurdR. G. LangR. LeguminaM. A. Leigui De OliveiraV. LenokA. Letessier-selvonI. Lhenry-yvonD. Lo PrestiL. LopesR. LópezA. López CasadoR. LorekQ. LuceA. LuceroM. MalacariM. MallamaciD. MandatP. MantschA. G. MariazziI. C. MarişG. MarsellaD. MartelloH. MartinezO. Martínez BravoH. J. MathesS. MathysJ. MatthewsG. MatthiaeE. MayotteP. O. MazurC. MedinaG. Medina-tancoD. MeloA. MenshikovK. -D. MerendaS. MichalM. I. MichelettiL. MiddendorfL. MiramontiB. MitricaD. MocklerS. MollerachF. MontanetC. MorelloG. MorlinoM. MostafáA. L. MüllerM. A. MullerS. MüllerR. MussaL. NellenP. H. NguyenM. Niculescu-oglinzanuM. NiechciolL. NiemietzD. NitzD. NosekV. NovotnyL. NožkaA NucitaL. A. NúñezF. OikonomouA. OlintoM. PalatkaJ. PallottaP. PapenbreerG. ParenteA. ParraT. PaulM. PechF. PedreiraJ. PękalaR. PelayoJ. Peña-rodriguezL. A. S. PereiraM. PerlinL. PerroneC. PetersS. PetreraJ. PhuntsokT. PierogM. PimentaV. PirronelloM. PlatinoJ. PohB. PontC. PorowskiR. R. PradoP. PriviteraM. ProuzaA. PuyleartE. J. QuelS. QuerchfeldS. QuinnR. Ramos-pollanJ. RautenbergD. RavignaniM. ReininghausJ. RidkyF. RiehnM. RisseP. RistoriV. RiziW. Rodrigues De CarvalhoG. Rodriguez FernandezJ. Rodriguez RojoM. J. RoncoroniM. RothE. RouletA. C. RoveroP. RuehlS. J. SaffiA. SaftoiuF. SalamidaH. SalazarA. SalehG. SalinaF. SánchezP. Sanchez-lucasE. M. SantosE. SantosF. SarazinR. SarmentoC. Sarmiento-canoR. SatoP. SavinaM. SchauerV. ScheriniH. SchielerM. SchimassekM. SchimpD. SchmidtO. ScholtenP. SchovánekF. G. SchröderS. SchröderA. SchulzJ. SchumacherS. J. SciuttoA. SegretoR. C. ShellardG. SiglG. SilliO. SimaR. ŠMídaG. R. SnowP. SommersJ. F. SorianoJ. SouchardR. SquartiniD. StancaS. StaničJ. StasielakP. StassiM. StolpovskiyF. StrafellaA. StreichF. SuarezM. Suárez-duránT. SudholzT. SuomijärviA. D. SupanitskyJ. ŠUpíkJ. SwainZ. SzadkowskiA. TaboadaO. A. TabordaC. TimmermansC. J. Todero PeixotoB. ToméG. Torralba ElipeP. TravnicekM. TriniM. TuerosR. UlrichM. UngerM. UrbanJ. F. Valdés GaliciaI. ValiñoL. ValoreP. Van BodegomA. M. Van Den BergA. Van VlietE. VarelaB. Vargas CárdenasR. A. VázquezD. VeberičC. VenturaI. D. Vergara QuispeV. VerziJ. VichaL. VillaseñorS. VorobiovH. WahlbergO. WainbergD. WalzA. A. WatsonM. WeberA. WeindlM. WiedeńskiL. WienckeH. WilczyńskiM. WirtzD. WittkowskiB. WundheilerL. YangA. YushkovE. ZasD. ZavrtanikM. ZavrtanikL. ZehrerA. ZepedaB. ZimmermannM. ZiolkowskiZ. ZongF. Zuccarellosubject
Physics::Instrumentation and DetectorsAstronomyengineering01 natural sciencesultra high energy cosmic rayAugerHigh Energy Physics - ExperimentHigh Energy Physics - Experiment (hep-ex)cosmic ray experiments; cosmic rays detectors; ultra high energy cosmic rays; Astronomy and Astrophysics[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]Cosmic ray experiments cosmic rays detectors ultra high energy cosmic rays Astronomy and Astrophysics.Absorption (electromagnetic radiation)Physicsradio waveSettore FIS/01 - Fisica SperimentaleDetectorAstrophysics::Instrumentation and Methods for AstrophysicsDETETORESCOSMIC-RAYSAugerobservatoryAmplitudecosmic rays detectorsAstrophysics - Instrumentation and Methods for Astrophysicsnumerical calculations: Monte CarloairAstrophysics::High Energy Astrophysical PhenomenaFOS: Physical sciencescosmic ray experimentultra high energy cosmic rayscascade: electromagneticOptics0103 physical sciencesHigh Energy Physics[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]cosmic rays detector010306 general physicscosmic ray experiments cosmic rays detectors ultra high energy cosmic raysInstrumentation and Methods for Astrophysics (astro-ph.IM)ZenithAstrophysiquePierre Auger Observatoryshowers: atmosphere010308 nuclear & particles physicsbusiness.industryScatteringhep-exdetector: surfacescatteringAstronomy and AstrophysicsAstronomieAir showerExperimental High Energy PhysicsARRAYHigh Energy Physics::Experimentcosmic ray experimentscosmic ray experiments; cosmic rays detectors; ultra high energy cosmic raysEMISSIONbusinessabsorptionastro-ph.IMdescription
With the Auger Engineering Radio Array (AERA) of the Pierre Auger Observatory, we have observed the radio emission from 561 extensive air showers with zenith angles between 60 and 84. In contrast to air showers with more vertical incidence, these inclined air showers illuminate large ground areas of several km2 with radio signals detectable in the 30 to 80 MHz band. A comparison of the measured radio-signal amplitudes with Monte Carlo simulations of a subset of 50 events for which we reconstruct the energy using the Auger surface detector shows agreement within the uncertainties of the current analysis. As expected for forward-beamed radio emission undergoing no significant absorption or scattering in the atmosphere, the area illuminated by radio signals grows with the zenith angle of the air shower. Inclined air showers with EeV energies are thus measurable with sparse radio-antenna arrays with grid sizes of a km or more. This is particularly attractive as radio detection provides direct access to the energy in the electromagnetic cascade of an air shower, which in case of inclined air showers is not accessible by arrays of particle detectors on the ground.
year | journal | country | edition | language |
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2018-10-16 |