학술논문

NANCY: Next-generation All-sky Near-infrared Community surveY
Document Type
Working Paper
Author
Han, Jiwon JesseDey, ArjunPrice-Whelan, Adrian M.Najita, JoanSchlafly, Edward F.Saydjari, AndrewWechsler, Risa H.Bonaca, AnaSchlegel, David JConroy, CharlieRaichoor, AnandDrlica-Wagner, AlexKollmeier, Juna A.Koposov, Sergey E.Besla, GurtinaRix, Hans-WalterGoodman, AlyssaFinkbeiner, DouglasAnand, AbhijeetAshby, MatthewBahr-Kalus, BenedictBeaton, RachelBehera, JayashreeBell, Eric F.Bellm, Eric CBenZvi, SegevSilva, Leandro Beraldo eBirrer, SimonBlanton, Michael R.Bock, JamieBroekgaarden, FloorBrout, DillonBrown, WarrenBrown, Anthony G. A.Bulbul, EsraCalderon, RodrigoCarlin, Jeffrey LCarrillo, AndreiaCastander, Francisco JavierChakraborty, PriyankaChandra, VedantChiang, Yi-KuanChoi, YumiClark, Susan E.Clarkson, William I.Cooper, AndrewCrill, BrendanCunha, KatiaCunningham, EmilyDalcanton, JulianneDanieli, ShanyDaylan, Tansude Jong, Roelof S.DeRose, JosephDey, BiprateepDickinson, MarkDominguez, MarianoDong, DillonEifler, TimEl-Badry, KareemErkal, DenisEscala, IvannaFazio, GiovanniFerguson, Annette M. N.Ferraro, SimoneFilion, CarrieForero-Romero, Jaime E.Fu, ShenmingGalbany, LluísGaravito-Camargo, NicolasGawiser, EricGeha, MarlaGnedin, Oleg Y.Gomez, SebastianGreene, JennyGuy, JulienHadzhiyska, BoryanaHawkins, KeithHeinrich, ChenHernquist, LarsHirata, ChristopherHora, JosephHorowitz, BenjaminHorta, DannyHuang, CarolineHuang, XiaoshengHuanyuan, ShanHunt, Jason A. S.Ibata, RodrigoJannuzi, BuellJohnston, Kathryn V.Jones, Michael G.Juneau, StephanieKado-Fong, ErinKalari, VenuKallivayalil, NityaKarim, TanveerKeeley, RyanKhoperskov, SergeyKim, BokyoungKovács, AndrásKrause, ElisabethKremer, KyleKremin, AnthonyKrolewski, AlexKulkarni, S. R.Kuna, MarineL'Huillier, BenjaminLacy, MarkLan, Ting-WenLang, DustinLeahy, DenisLi, JiaxuanLim, SeunghwanLópez-Morales, MercedesMacri, LucasMarc, ManeraMau, SidneyMcCarthy, Patrick JMcDonald, EithneMcQuinn, KristenMeisner, AaronMelnick, GaryMerloni, AndreaMillard, CléaMillon, MartinMinchev, IvanMontero-Camacho, PauloMorales-Gutierrez, CatalinaMorrell, NidiaMoustakas, JohnMoustakas, LeonidasMurray, ZacharyMutlu-Pakdil, BurcinMyeong, GyuChulMyers, Adam D.Nadler, EthanNavarete, FelipeNess, MelissaNidever, David L.Nikutta, RobertNushkia, ChambaOlsen, KnutPace, Andrew B.Pacucci, FabioPadmanabhan, NikhilParkinson, DavidPearson, SarahPeng, Eric W.Petric, Andreea O.Petric, AndreeaRatcliffe, BridgetRazieh, EmamiReiprich, ThomasRezaie, MehdiRicci, MarinaRich, R. MichaelRichstein, HannahRiley, Alexander H.Rockosi, ConstanceRossi, GrazianoSalvato, MaraSamushia, LadoSanchez, JavierSand, David JSanderson, Robyn EŠarčević, NikolinaSarkar, ArnabSavino, AlessandroSchweizer, FrancoisShafieloo, ArmanShengqi, YangShields, JosephShipp, NoraSimon, JoshSiudek, MalgorzataSiwei, ZouSlepian, ZacharySmith, VerneSobeck, JenniferSohn, Sangmo TonySom, DebopamSpeagle, Joshua S.Spergel, DavidSzabo, RobertTan, TingTheissen, ChristopherTollerud, ErikTolls, VolkerTran, Kim-VyTsiane, KabeloVacca, William D.Valluri, MonicaVerberi, TonyLouisWarfield, JackWeaverdyck, NoahWeiner, BenjaminWeisz, DanielWetzel, AndrewWhite, MartinWilliams, Christina C.Wolk, ScottWu, John F.Wyse, RosemaryYang, Justina R.Zaritsky, DennisZelko, Ioana A.Zhimin, ZhouZucker, Catherine
Source
Subject
Astrophysics - Instrumentation and Methods for Astrophysics
Language
Abstract
The Nancy Grace Roman Space Telescope is capable of delivering an unprecedented all-sky, high-spatial resolution, multi-epoch infrared map to the astronomical community. This opportunity arises in the midst of numerous ground- and space-based surveys that will provide extensive spectroscopy and imaging together covering the entire sky (such as Rubin/LSST, Euclid, UNIONS, SPHEREx, DESI, SDSS-V, GALAH, 4MOST, WEAVE, MOONS, PFS, UVEX, NEO Surveyor, etc.). Roman can uniquely provide uniform high-spatial-resolution (~0.1 arcsec) imaging over the entire sky, vastly expanding the science reach and precision of all of these near-term and future surveys. This imaging will not only enhance other surveys, but also facilitate completely new science. By imaging the full sky over two epochs, Roman can measure the proper motions for stars across the entire Milky Way, probing 100 times fainter than Gaia out to the very edge of the Galaxy. Here, we propose NANCY: a completely public, all-sky survey that will create a high-value legacy dataset benefiting innumerable ongoing and forthcoming studies of the universe. NANCY is a pure expression of Roman's potential: it images the entire sky, at high spatial resolution, in a broad infrared bandpass that collects as many photons as possible. The majority of all ongoing astronomical surveys would benefit from incorporating observations of NANCY into their analyses, whether these surveys focus on nearby stars, the Milky Way, near-field cosmology, or the broader universe.
Comment: Submitted to the call for white papers for the Roman Core Community Survey (June 16th, 2023), and to the Bulletin of the AAS