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  Superclustering with the Atacama Cosmology Telescope and Dark Energy Survey. I. Evidence for thermal energy anisotropy using oriented stacking

Lokken, M., Hložek, R., van Engelen, A., Madhavacheril, M., Baxter, E., DeRose, J., et al. (2022). Superclustering with the Atacama Cosmology Telescope and Dark Energy Survey. I. Evidence for thermal energy anisotropy using oriented stacking. The Astrophysical Journal, 933(2): 134. doi:10.3847/1538-4357/ac7043.

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Lokken, M., Author
Hložek, R., Author
van Engelen, A., Author
Madhavacheril, M., Author
Baxter, E., Author
DeRose, J., Author
Doux, C., Author
Pandey, S., Author
Rykoff, E. S., Author
Stein, G., Author
To, C., Author
Abbott, T. M. C., Author
Adhikari, S., Author
Aguena, M., Author
Allam, S., Author
Andrade-Oliveira, F., Author
Annis, J., Author
Battaglia, N., Author
Bernstein, G. M., Author
Bertin, E., Author
Bond, J. R., AuthorBrooks, D., AuthorCalabrese, E., AuthorRosell, A. Carnero, AuthorKind, M. Carrasco, AuthorCarretero, J., AuthorCawthon, R., AuthorChoi, A., AuthorCostanzi, M., AuthorCrocce, M., Authorda Costa, L. N., Authorda Pereira, M. E. Silva, AuthorVicente, J. De, AuthorDesai, S., AuthorDietrich, J. P., AuthorDoel, P., AuthorDunkley, J., AuthorEverett, S., AuthorEvrard, A. E., AuthorFerraro, S., AuthorFlaugher, B., AuthorFosalba, P., AuthorFrieman, J., AuthorGallardo, P. A., AuthorGarcía-Bellido, J., AuthorGaztanaga, E., AuthorGerdes, D. W., AuthorGiannantonio, T., AuthorGruen, D., AuthorGruendl, R. A., AuthorGschwend, J., AuthorGutierrez, G., AuthorHill, J. C., AuthorHilton, M., AuthorHincks, A. D., AuthorHinton, S. R., AuthorHollowood, D. L., AuthorHonscheid, K., AuthorHoyle, B., AuthorHuang, Z., AuthorHughes, J. P., AuthorHuterer, D., AuthorJain, B., AuthorJames, D. J., AuthorJeltema, T., AuthorKuehn, K., AuthorLima, M., AuthorMaia, M. A. G., AuthorMarshall, J. L., AuthorMcMahon, J., AuthorMelchior, P., AuthorMenanteau, F., AuthorMiquel, R., AuthorMohr, J. J.1, Author           Moodley, K., AuthorMorgan, R., AuthorNati, F., AuthorPage, L., AuthorOgando, R. L. C., AuthorPalmese, A., AuthorPaz-Chinchón, F., AuthorMalagón, A. A. Plazas, AuthorPieres, A., AuthorRomer, A. K., AuthorRozo, E., AuthorSanchez, E., AuthorScarpine, V., AuthorSchillaci, A., AuthorSchubnell, M., AuthorSerrano, S., AuthorSevilla-Noarbe, I., AuthorSheldon, E., AuthorShin, T., AuthorSifón, C., AuthorSmith, M., AuthorSoares-Santos, M., AuthorSuchyta, E., AuthorSwanson, M. E. C., AuthorTarle, G., AuthorThomas, D., AuthorTucker, D. L., AuthorVarga, T. N.1, Author           Weller, J.1, Author           Wechsler, R. H., AuthorWilkinson, R. D., AuthorWollack, E. J., AuthorXu, Z., Author more..
Affiliations:
1Optical and Interpretative Astronomy, MPI for Extraterrestrial Physics, Max Planck Society, ou_159895              

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 Abstract: The cosmic web contains filamentary structure on a wide range of scales. On the largest scales, superclustering aligns multiple galaxy clusters along intercluster bridges, visible through their thermal Sunyaev–Zel’dovich signal in the cosmic microwave background. We demonstrate a new, flexible method to analyze the hot gas signal from multiscale extended structures. We use a Compton y-map from the Atacama Cosmology Telescope (ACT) stacked on redMaPPer cluster positions from the optical Dark Energy Survey (DES). Cutout images from the y-map are oriented with large-scale structure information from DES galaxy data such that the superclustering signal is aligned before being overlaid. We find evidence of an extended quadrupole moment of the stacked y signal at the 3.5σ level, demonstrating that the large-scale thermal energy surrounding galaxy clusters is anisotropically distributed. We compare our ACT × DES results with the Buzzard simulations, finding broad agreement. Using simulations, we highlight the promise of this novel technique for constraining the evolution of anisotropic, non-Gaussian structure using future combinations of microwave and optical surveys.

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 Dates: 2022-07-08
 Publication Status: Published online
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 Identifiers: DOI: 10.3847/1538-4357/ac7043
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Title: The Astrophysical Journal
Source Genre: Journal
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Publ. Info: Bristol; Vienna : IOP Publishing; IAEA
Pages: - Volume / Issue: 933 (2) Sequence Number: 134 Start / End Page: - Identifier: ISSN: 0004-637X
CoNE: https://pure.mpg.de/cone/journals/resource/954922828215_3