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LOFAR: The LOw-Frequency ARray

Astronomy and Astrophysics · 2013 · Vol. 556 · pp. A2–A2
M. P. van HaarlemM. W. WiseA. W. GunstG. HealdJ. P. McKeanJ. W. T. HesselsA. G. de BruynR. NijboerJ. SwinbankR. A. FallowsM. A. BrentjensA. NellesR. BeckH. FalckeR. P. FenderJ.R. HörandelL. V. E. KoopmansG. MannG. K. MileyH. J. A. RöttgeringB. W. StappersR. A. M. J. WijersSaleem ZaroubiM. van den AkkerA. AlexovJ. M. AndersonKevin D. AndersonA. van ArdenneM. ArtsA. AsgekarI. M. AvruchF. BatejatL. BährenM. E. BellM. R. BellIlse van BemmelP. BennemaMark BentumG. BernardiP. N. BestL. BırzanA. BonafedeAlbert‐Jan BoonstraRóbert BraunJoel N. BregmanF. BreitlingR. H. van de BrinkJ. W. BroderickP. Chris BroekemaW. N. BrouwM. BrüggenH. R. ButcherW. van CappellenB. CiardiThijs CoenenJ. E. ConwayA. H. W. M. CoolenA. CorstanjeS. DamstraO.T. DaviesAdam T. DellerR.‐J. DettmarGer van DiepenK. DijkstraP. DonkerA. DoorduinJ. DromerM. DrostA. van DuinJ. EislöffelJ. van EnstC. FerrariW. FrieswijkHenk S. GANKEMAM. A. GarrettF. de GasperinM. GerbersE. de GeusJ.‐M. GrießmeierT. GritP. GruppenJ. P. HamakerT. E. HassallM. HoeftH. A. HoltiesA. HornefferA. J. van der HorstA. van HouwelingenA. HuijgenM. IacobelliH. T. IntemaN. JacksonVibor JelićA. de JongE. JuetteD. KantA. KarastergiouA. KoersH. KollenV. I. KondratievE. KooistraY. KoopmanA. KosterM. KuniyoshiM. KrämerG. KüperP. LambropoulosCasey LawJ. van LeeuwenJérôme LemaitreM. LooseP. MaatG. MacarioSera MarkoffJ. MastersR. McFaddenD. McKay‐BukowskiH. MeijeringH. MeulmanM. MeviusE. MiddelbergRob MillenaarJ. C. A. Miller‐JonesRengarajan MohanJan David MolJ. MorawietzRaffaella MorgantiD. D. MulcahyE. MulderH. MunkLambert J. M. NieuwenhuisRob V. van NieuwpoortJ. E. NoordamM. J. NordenA. NoutsosA. R. OffringaH. OlofssonAmitesh OmarE. OrrúR. OvereemH. PaasM. Pandey-PommierV. N. PandeyR. PizzoA. G. PolatidisD. A. RaffertySteve RawlingsW. ReichJ.-P. de ReijerJ. ReitsmaG. A. RentingP. RiemersE. RolJohn W. RomeinJ. RoosjenM. RuiterAnna M. M. ScaifeK. van der SchaafB. ScheersP. SchellartA. P. SchoenmakersG. SchoonderbeekM. SerylakA. ShulevskiJurjen J SlumanO. SmirnovC. SobeyHanno SpreeuwMatthias SteinmetzC. G. M. SterksH.-J. StiepelK. J. C. StuurwoldM. TaggerY. TangC. TasseIan ThomasS. ThoudamM. C. ToribioBas van der TolO. UsovMartijn van VeelenA. van VeenS. ter VeenJ. P. W. VerbiestR. C. VermeulenN. J. VermaasC. VocksC. VogtM. de VosErik van der WalR. J. van WeerenH. WeggemansP. WeltevredeS. M. WhiteS. J. WijnholdsT. WilhelmssonO. WucknitzS. YatawattaP. ZarkaJ. A. ZensusJ. van Zwieten

Abstract

LOFAR, the LOw-Frequency ARray, is a new-generation radio interferometer constructed in the north of the Netherlands and across europe. Utilizing a novel phased-array design, LOFAR covers the largely unexplored low-frequency range from 10–240 MHz and provides a number of unique observing capabilities. Spreading out from a core located near the village of Exloo in the northeast of the Netherlands, a total of 40 LOFAR stations are nearing completion. A further five stations have been deployed throughout Germany, and one station has been built in each of France, Sweden, and the UK. Digital beam-forming techniques make the LOFAR system agile and allow for rapid repointing of the telescope as well as the potential for multiple simultaneous observations. With its dense core array and long interferometric baselines, LOFAR achieves unparalleled sensitivity and angular resolution in the low-frequency radio regime. The LOFAR facilities are jointly operated by the International LOFAR Telescope (ILT) foundation, as an observatory open to the global astronomical community. LOFAR is one of the first radio observatories to feature automated processing pipelines to deliver fully calibrated science products to its user community. LOFAR’s new capabilities, techniques and modus operandi make it an important pathfinder for the Square Kilometre Array (SKA). We give an overview of the LOFAR instrument, its major hardware and software components, and the core science objectives that have driven its design. In addition, we present a selection of new results from the commissioning phase of this new radio observatory.

Radio Astronomy Observations and TechnologyAstrophysics and Cosmic PhenomenaAntenna Design and OptimizationLOFARRadio telescopeObservatoryRemote sensingTelescopePhysicsAstronomyGeography

Funding

  • Agence Nationale de la Recherche
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
  • Science and Technology Facilities Council
  • European Regional Development Fund
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