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Characterization of DESI fiber assignment incompleteness effect on 2-point clustering and mitigation methods for DR1 analysis

Davide BianchiMilan UM. HanifMichigan UA. Carnero RosellLaguna U., TenerifeJ. LaskerSouthern Methodist UA.J. RossOhio State U., Dept. AstronM. PinonIRFU, SaclayArnaud de MattiaIRFU, SaclayMartin WhiteUC, BerkeleyS. AhlenBoston US. I. BaileyDavid J. BrooksUniversity Coll. LondonE. BurtinIRFU, SaclayE. ChaussidonT. ClaybaughS. ColeDurham U., ICCAxel de la MacorraUNAM, MexicoS. FerraroBCCP, BerkeleyAndreu Font-RiberaUniversity Coll. LondonJ. E. Forero-RomeroE. GaztañagaPortsmouth U., ICGSatya Gontcho A GontchoG. GutiérrezFermilabJ. GuyChang Hoon HahnKlaus HonscheidChicago U., KICPCullan HowlettQueensland US. JuneauNatl. Solar Observ., TucsonD. KirkbyUC, IrvineTheodore KisnerAnthony KreminMartin LandriauL. Le GuillouLPNHE, ParisM. E. LeviP. McDonaldAaron MeisnerNatl. Solar Observ., TucsonR. MiquelBarcelona, IFAEJohn MoustakasSiena Coll., LoudonvilleN. Palanque‐DelabrouilleIRFU, SaclayWill J. PercivalPerimeter Inst. Theor. PhysFrancisco PradaGranada U., Theor. Phys. AstrophysIgnasi Pérez-RàfolsBarcelona, Polytechnic UA. RaichoorG. RossiSejong UE. SánchezMadrid, CIEMATDavid J. SchlegelM. SchubnellHiroshima Shudo UR. M. SharplesDurham UJ. SilberD. SprayberryNatl. Solar Observ., TucsonG. TarléKEK, TsukubaM. Vargas-MagañaUNAM, MexicoB. A. WeaverNatl. Solar Observ., TucsonP. ZarroukLPNHE, ParisRongpu ZhouH. ZouBeijing Observ
ABI

Аннотация

Abstract We present an in-depth analysis of the fiber assignment incompleteness in the Dark Energy Spectroscopic Instrument (DESI) Data Release 1 (DR1). This incompleteness is caused by the restricted mobility of the robotic fiber positioner in the DESI focal plane, which limits the number of galaxies that can be observed at the same time, especially at small angular separations. As a result, the observed clustering amplitude is suppressed in a scale-dependent manner, which, if not addressed, can severely impact the inference of cosmological parameters. We discuss the methods adopted for simulating fiber assignment on mocks and data. In particular, we introduce the fast fiber assignment (FFA) emulator, which was employed to obtain the power spectrum covariance adopted for the DR1 full-shape analysis. We present the mitigation techniques, organised in two classes: measurement stage and model stage. We then use high fidelity mocks as a reference to quantify both the accuracy of the FFA emulator and the effectiveness of the different measurement-stage mitigation techniques. This complements the studies conducted in a parallel paper for the model-stage techniques, namely the θ-cut approach. We find that pairwise inverse probability (PIP) weights with angular upweighting recover the “true” clustering in all the cases considered, in both Fourier and configuration space. Notably, we present the first ever power spectrum measurement with PIP weights from real data.

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