6533b870fe1ef96bd12cf363

RESEARCH PRODUCT

Origin of atmospheric aerosols at the Pierre Auger Observatory using studies of air mass trajectories in South America

A. AabP. AbreuJ. Alvarez CastilloJ. C. DiazM. L. Díaz CastroP. N. DiepF. DiogoC. DobrigkeitW. DoctersJ. C. D’olivoP. N. DongA. DorofeevJ. C. Dos AnjosJ. Alvarez-muñizM. T. DovaJ. EbrR. EngelM. ErdmannC. O. EscobarJ. EspadanalA. EtchegoyenP. Facal San LuisH. FalckeK. FangM. AmbrosioG. FarrarA. C. FauthN. FazziniA. P. FergusonB. FickJ. M. FigueiraA. FilevichA. FilipčičN. FoersterB. D. FoxA. AminaeiC. E. FracchiollaE. D. FraenkelO. FratuU. FröhlichB. FuchsR. GaiorR. F. GamarraS. GambettaB. GarcíaS. T. Garcia RocaL. AnchordoquiD. Garcia-gamezD. Garcia-pintoG. GarilliA. Gascon BravoH. GemmekeP. L. GhiaM. GiammarchiM. GillerJ. GittoC. GlaserS. AndringaH. GlassF. Gomez AlbarracinM. Gómez BerissoP. F. Gómez VitaleP. GonçalvesJ. G. GonzalezB. GookinA. GorgiP. GorhamP. GouffonT. AntičićS. GrebeN. GriffithA. F. GrilloT. D. GrubbY. GuardincerriF. GuarinoG. P. GuedesP. HansenD. HarariT. A. HarrisonC. AramoJ. L. HartonA. HaungsT. HebbekerD. HeckA. E. HerveG. C. HillC. HojvatN. HollonE. HoltP. HomolaF. ArquerosJ. R. HörandelP. HorvathM. HrabovskýD. HuberT. HuegeA. InsoliaP. G. IsarC. JarneM. JosebachuiliK. KadijaH. AsoreyO. KambeitzK. H. KampertP. KarhanP. KasperB. KéglB. KeilhauerA. KeivaniE. KempR. M. KieckhaferH. O. KlagesM. AgliettaP. AssisM. KleifgesJ. KleinfellerR. KrauseN. KrohmO. KrömerD. Kruppke-hansenD. KuempelN. KunkaG. La RosaD. LahurdJ. AublinL. LatronicoM. LauscherP. LautridouS. Le CozM. S. A. B. LeãoD. LebrunP. LebrunM. A. Leigui De OliveiraA. Letessier-selvonI. Lhenry-yvonM. AveK. LinkR. LópezA. Lopez AgüeraK. LouedecJ. Lozano BahiloL. LuA. LuceroM. LudwigH. LyberisM. C. MaccaroneM. AvenierM. MalacariS. MalderaJ. MallerD. MandatP. MantschA. G. MariazziV. MarinI. C. MarişH. R. Marquez FalconG. MarsellaG. AvilaD. MartelloH. MartinezO. Martínez BravoD. MartraireJ. J. Masías MezaH. J. MathesJ. MatthewsJ. A. J. MatthewsG. MatthiaeD. MaurelA. M. BadescuD. MaurizioE. MayotteP. O. MazurC. MedinaG. Medina-tancoM. MelissasD. MeloE. MenichettiA. MenshikovS. MessinaK. B. BarberR. MeyhandanS. MićanovićM. I. MichelettiL. MiddendorfI. A. MinayaL. MiramontiB. MitricaL. Molina-buenoS. MollerachM. MonasorR. BardenetD. Monnier RagaigneF. MontanetB. MoralesC. MorelloJ. C. MorenoM. MostafáC. A. MouraG. MüllerM. MünchmeyerR. MussaJ. BäumlG. NavarraJ. L. NavarroS. NavasP. NecesalL. NellenA. NellesJ. NeuserP. T. NhungM. NiechciolL. NiemietzC. BausT. NiggemannD. NitzD. NosekL. NožkaJ. OehlschlägerA. OlintoM. OrtizN. PachecoD. Pakk Selmi-deiM. PalatkaM. AhlersJ. J. BeattyJ. PallottaN. PalmieriG. ParenteA. ParraS. PastorT. PaulM. PechJ. PȩkalaR. PelayoI. M. PepeK. H. BeckerL. PerroneR. PesceE. PetermannS. PetreraA. PetroliniY. PetrovR. PiegaiaT. PierogP. PieroniM. PimentaJ. A. BellidoV. PirronelloM. PlatinoM. PlumM. PontzA. PorcelliT. PredaP. PriviteraM. ProuzaE. J. QuelS. QuerchfeldS. BenzviS. QuinnJ. RautenbergO. RavelD. RavignaniB. RevenuJ. RidkyS. RiggiM. RisseP. RistoriH. RiveraC. BeratV. RiziJ. RobertsW. Rodrigues De CarvalhoI. Rodriguez CaboG. Rodriguez FernandezJ. Rodriguez MartinoJ. Rodriguez RojoM. D. Rodríguez-fríasG. RosJ. RosadoX. BertouT. RosslerM. RothB. Rouillé-d’orfeuilE. RouletA. C. RoveroC. RühleS. J. SaffiA. SaftoiuF. SalamidaH. SalazarP. L. BiermannF. Salesa GreusG. SalinaF. SánchezP. Sanchez-lucasC. E. SantoE. SantosE. M. SantosF. SarazinB. SarkarR. SarmentoP. BilloirN. ScharfV. ScheriniH. SchielerP. SchifferO. ScholtenH. SchoorlemmerP. SchovánekF. G. SchröderS. J. SciuttoM. ScuderiM. BlancoA. SegretoM. SettimoA. ShadkamR. C. ShellardI. SidelnikG. SiglO. SimaA. ŚMiałkowskiR. ŠMídaG. R. SnowC. BleveP. SommersJ. SorokinH. SpinkaR. SquartiniY. N. SrivastavaS. StaničJ. StapletonJ. StasielakM. StraubA. StutzE. J. AhnH. BlümerF. SuarezT. SuomijärviA. D. SupanitskyT. ŠUšaM. S. SutherlandJ. SwainZ. SzadkowskiM. SzubaA. TapiaM. TartareM. BoháčováO. TaşcăuN. T. ThaoJ. TiffenbergC. TimmermansW. TkaczykC. J. Todero PeixotoG. TomaL. TomankovaB. ToméA. TonachiniC. BonifaziG. Torralba ElipeD. Torres MachadoP. TravnicekD. B. TridapalliE. TrovatoM. TuerosR. UlrichM. UngerJ. F. Valdés GaliciaI. ValiñoR. BoninoL. ValoreG. Van AarA. M. Van Den BergS. Van VelzenA. Van VlietE. VarelaB. Vargas CárdenasG. VarnerJ. R. VázquezR. A. VázquezN. BorodaiD. VeberičV. VerziJ. VichaM. VidelaL. VillaseñorH. WahlbergP. WahrlichO. WainbergD. WalzA. A. WatsonJ. BrackK. WeidenhauptA. WeindlF. WernerS. WesterhoffB. J. WhelanA. WidomG. WieczorekL. WienckeB. WilczyńskaH. WilczyńskiI. BrancusM. WillC. WilliamsT. WinchenB. WundheilerS. WykesT. YamamotoT. YapiciP. YounkG. YuanA. YushkovP. BrogueiraB. ZamoranoE. ZasD. ZavrtanikM. ZavrtanikI. ZawA. ZepedaJ. ZhouY. ZhuM. Zimbres SilvaG. CurciW. C. BrownPierre Auger CollaborationR. Alves BatistaF. BlancoD. BoncioliS. JansenI. KatkovJ. KnappR. LauerL. MartinL. MüllerP. BuchholzM. OliveiraR. SatoA. SchmidtA. SchulzJ. SchulzM. StephanM. WeberM. ZiolkowskiI. F. M. AlbuquerqueA. BuenoM. BuscemiK. S. Caballero-moraB. CaccianigaL. CaccianigaM. CandussoL. CarameteR. CarusoA. CastellinaG. CataldiI. AllekotteL. CazonR. CesterS. H. ChengA. ChiavassaJ. A. ChinellatoJ. ChudobaM. CilmoR. W. ClayG. CoccioloR. ColalilloJ. AllenL. CollicaM. R. ColucciaR. ConceiçãoF. ContrerasM. J. CooperS. CoutuC. E. CovaultA. CrissJ. CroninA. CurutiuP. AllisonR. DallierB. DanielS. DassoK. DaumillerB. R. DawsonR. M. De AlmeidaM. De DomenicoS. J. De JongG. De La VegaW. J. M. De Mello JuniorA. AlmelaJ. R. T. De Mello NetoI. De MitriV. De SouzaK. D. De VriesL. Del PeralO. DelignyH. DembinskiN. DhitalC. Di GiulioA. Di Matteo

subject

Atmospheric Science010504 meteorology & atmospheric sciencesaerosolAstronomyObservatoriesAerosol concentrationAir pollution010501 environmental sciencesAtmospheric sciencesmedicine.disease_causeAerosols Atmospheric aerosols Augers Cosmic rays Observatories; Aerosol concentration Aerosol optical depths Air mass Atmospheric effects GDAS HYSPLIT Pierre Auger observatory Ultra high-energy cosmic rays; Meteorology; aerosol property air mass concentration (composition) optical depth trajectory urban area urban atmosphere; Argentina01 natural sciencesoptical depthObservatory11. Sustainabilityddc:550MeteorologiaAugersmedia_commonHigh Energy Astrophysical Phenomena (astro-ph.HE)Physicsconcentration (composition)Physics[SDU.ASTR.HE]Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE]urban atmosphereAtmospheric effectsGDASAtmospheric aerosolscosmic ray; aerosol; air masses; atmospheric effectPhysics - Atmospheric and Oceanic PhysicstrajectoryClimatologyComputingMethodologies_DOCUMENTANDTEXTPROCESSINGHYSPLITAstrophysics - Instrumentation and Methods for AstrophysicsAstrophysics - High Energy Astrophysical PhenomenaPollutionaerosol property[PHYS.ASTR.HE]Physics [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE][PHYS.ASTR.IM]Physics [physics]/Astrophysics [astro-ph]/Instrumentation and Methods for Astrophysic [astro-ph.IM]media_common.quotation_subjectatmospheric effectArgentinaFOS: Physical sciencesHYSPLITAtmósferaAtmosphereMeteorologycosmic raysmedicineAerosol optical depthsInstrumentation and Methods for Astrophysics (astro-ph.IM)Cosmic raysCiencias ExactasAir mass0105 earth and related environmental sciencesAerosols[PHYS.PHYS.PHYS-AO-PH]Physics [physics]/Physics [physics]/Atmospheric and Oceanic Physics [physics.ao-ph]Pierre Auger ObservatoryFísicaASTROFÍSICA[SDU.ASTR.IM]Sciences of the Universe [physics]/Astrophysics [astro-ph]/Instrumentation and Methods for Astrophysic [astro-ph.IM]Aerosol13. Climate actionExperimental High Energy PhysicsAtmospheric and Oceanic Physics (physics.ao-ph)Pierre Auger observatoryAir massair massesUltra high-energy cosmic raysurban area

description

The Pierre Auger Observatory is making significant contributions towards understanding the nature and origin of ultra-high energy cosmic rays. One of its main challenges is the monitoring of the atmosphere, both in terms of its state variables and its optical properties. The aim of this work is to analyze aerosol optical depth $\tau_{\rm a}(z)$ values measured from 2004 to 2012 at the observatory, which is located in a remote and relatively unstudied area of the Pampa Amarilla, Argentina. The aerosol optical depth is in average quite low - annual mean $\tau_{\rm a}(3.5~{\rm km})\sim 0.04$ - and shows a seasonal trend with a winter minimum - $\tau_{\rm a}(3.5~{\rm km})\sim 0.03$ -, and a summer maximum - $\tau_{\rm a}(3.5~{\rm km})\sim 0.06$ -, and an unexpected increase from August to September - $\tau_{\rm a}(3.5~{\rm km})\sim 0.055$). We computed backward trajectories for the years 2005 to 2012 to interpret the air mass origin. Winter nights with low aerosol concentrations show air masses originating from the Pacific Ocean. Average concentrations are affected by continental sources (wind-blown dust and urban pollution), while the peak observed in September and October could be linked to biomass burning in the northern part of Argentina or air pollution coming from surrounding urban areas.

10.1016/j.atmosres.2014.05.021http://hdl.handle.net/2318/155739