학술논문

CMB-S4: Forecasting Constraints on Primordial Gravitational Waves
Document Type
article
Author
Abazajian, KevorkAddison, Graeme EAdshead, PeterAhmed, ZeeshanAkerib, DanielAli, AamirAllen, Steven WAlonso, DavidAlvarez, MarceloAmin, Mustafa AAnderson, AdamArnold, Kam SAshton, PeterBaccigalupi, CarloBard, DebbieBarkats, DenisBarron, DarcyBarry, Peter SBartlett, James GThakur, Ritoban BasuBattaglia, NicholasBean, RachelBebek, ChrisBender, Amy NBenson, Bradford ABianchini, FedericoBischoff, Colin ABleem, LindseyBock, James JBocquet, SebastianBoddy, Kimberly KBond, J RichardBorrill, JulianBouchet, François RBrinckmann, ThejsBrown, Michael LBryan, SeanBuza, VictorByrum, KarenCaimapo, Carlos HerviasCalabrese, ErminiaCalafut, VictoriaCaldwell, RobertCarlstrom, John ECarron, JulienCecil, ThomasChallinor, AnthonyChang, Clarence LChinone, YujiCho, Hsiao-Mei SherryCooray, AsanthaCoulton, WillCrawford, Thomas MCrites, AbigailCukierman, AriCyr-Racine, Francis-Yande Haan, TijmenDelabrouille, JacquesDevlin, MarkDi Valentino, EleonoraDierickx, MarionDobbs, MattDuff, ShannonDvorkin, CoraEimer, JosephElleflot, TuckerErrard, JosquinEssinger-Hileman, ThomasFabbian, GiulioFeng, ChangFerraro, SimoneFilippini, Jeffrey PFlauger, RaphaelFlaugher, BrennaFraisse, Aurelien AFrolov, AndreiGalitzki, NicholasGallardo, Patricio AGalli, SilviaGanga, KenGerbino, MartinaGluscevic, VeraGoeckner-Wald, NeilGreen, DanielGrin, DanielGrohs, EvanGualtieri, RiccardoGudmundsson, Jon EGullett, IanGupta, NikhelHabib, SalmanHalpern, MarkHalverson, Nils WHanany, ShaulHarrington, KathleenHasegawa, MasayaHasselfield, MatthewHazumi, MasashiHeitmann, KatrinHenderson, Shawn
Source
The Astrophysical Journal. 926(1)
Subject
Particle and High Energy Physics
Physical Sciences
Astronomical and Space Sciences
Atomic
Molecular
Nuclear
Particle and Plasma Physics
Physical Chemistry (incl. Structural)
Astronomy & Astrophysics
Astronomical sciences
Particle and high energy physics
Space sciences
Language
Abstract
CMB-S4 - the next-generation ground-based cosmic microwave background (CMB) experiment - is set to significantly advance the sensitivity of CMB measurements and enhance our understanding of the origin and evolution of the universe. Among the science cases pursued with CMB-S4, the quest for detecting primordial gravitational waves is a central driver of the experimental design. This work details the development of a forecasting framework that includes a power-spectrum-based semianalytic projection tool, targeted explicitly toward optimizing constraints on the tensor-to-scalar ratio, r, in the presence of Galactic foregrounds and gravitational lensing of the CMB. This framework is unique in its direct use of information from the achieved performance of current Stage 2-3 CMB experiments to robustly forecast the science reach of upcoming CMB-polarization endeavors. The methodology allows for rapid iteration over experimental configurations and offers a flexible way to optimize the design of future experiments, given a desired scientific goal. To form a closed-loop process, we couple this semianalytic tool with map-based validation studies, which allow for the injection of additional complexity and verification of our forecasts with several independent analysis methods. We document multiple rounds of forecasts for CMB-S4 using this process and the resulting establishment of the current reference design of the primordial gravitational-wave component of the Stage-4 experiment, optimized to achieve our science goals of detecting primordial gravitational waves for r > 0.003 at greater than 5σ, or in the absence of a detection, of reaching an upper limit of r < 0.001 at 95% CL.