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Massive neutrinos suppress the growth of structure under their free-streaming scales.
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W. Hu, D. J. Eisenstein and M. Tegmark, Weighing Neutrinos with Galaxy Surveys , \prl
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T. Matsubara, Statistics of Smoothed Cosmic Fields in Perturbation Theory. I. Formulation and Useful Formulae in Second-Order Perturbation Theory , \apj
2003
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KamLAND Collaboration
2005
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C. Park, J. Kim and I. Gott, J. Richard, Effects of Gravitational Evolution, Biasing, and Redshift Space Distortion on Topology , \apj
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C. Hikage, E. Komatsu and T. Matsubara, Primordial Non-Gaussianity and Analytical Formula for Minkowski Functionals of the Cosmic Microwave Background and Large-Scale Structure , \apj
2006
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L. Gleser, A. Nusser, B. Ciardi and V. Desjacques, The morphology of cosmological reionization by means of Minkowski functionals , \mnras
2006
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2007
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J. Hartlap, P. Simon and P. Schneider, Why your model parameter confidences might be too optimistic. unbiased estimation of the inverse covariance matrix , Astronomy & Astrophysics 464
2007
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MINOS Collaboration
S. Hannestad and T. Schwetz, Cosmology and the neutrino mass ordering , Journal of Cosmology and Astroparticle Physics 2016
2016
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2016
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2016
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M. Zennaro, J. Bel, F. Villaescusa-Navarro, C. Carbone, E. Sefusatti and L. Guzzo, Initial conditions for accurate N-body simulations of massive neutrino cosmologies , Monthly Notices of the Royal Astronomical Society 466
2016
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2008
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2008
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J. Brandbyge, S. Hannestad, T. Haugbølle and B. Thomsen, The effect of thermal neutrino motion on the non-linear cosmological matter power spectrum , Journal of Cosmology and Astroparticle Physics 2008
2008
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M. Viel, M. G. Haehnelt and V. Springel, The effect of neutrinos on the matter distribution as probed by the intergalactic medium , Journal of Cosmology and Astroparticle Physics 2010
2010
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2011
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H. Zhan Sci. Sin. Phys. Mech. Astron. 41
2011
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F. Marulli, C. Carbone, M. Viel, L. Moscardini and A. Cimatti, Effects of massive neutrinos on the large-scale structure of the Universe , Monthly Notices of the Royal Astronomical Society 418
2011
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2011
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2017
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2017
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J. D. Emberson, H.-R. Yu, D. Inman, T.-J. Zhang, U.-L. Pen, J. Harnois-Déraps et al., Cosmological neutrino simulations at extreme scale , Research in Astronomy and Astrophysics 17
2017
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2017
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P. F. de Salas, D. V. Forero, C. A. Ternes, M. Tórtola and J. W. F. Valle, Status of neutrino oscillations 2018: 3 σ \sigma hint for normal mass ordering and improved CP sensitivity , Physics Letters B 782
2018
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2018
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F. Villaescusa-Navarro, A. Banerjee, N. Dalal, E. Castorina, R. Scoccimarro, R. Angulo et al., The imprint of neutrinos on clustering in redshift space , The Astrophysical Journal 861
2018
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M. Gerbino and M. Lattanzi, Status of neutrino properties and future prospects—cosmological and astrophysical constraints , Frontiers in Physics 5
2018
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T. Brinckmann, D. C. Hooper, M. Archidiacono, J. Lesgourgues and T. Sprenger, The promising future of a robust cosmological neutrino mass measurement , Journal of Cosmology and Astroparticle Physics 2019
2019
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A. Chudaykin and M. M. Ivanov, Measuring neutrino masses with large-scale structure: Euclid forecast with controlled theoretical error , Journal of Cosmology and Astroparticle Physics 2019
2019
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C. D. Kreisch, A. Pisani, C. Carbone, J. Liu, A. J. Hawken, E. Massara et al., Massive neutrinos leave fingerprints on cosmic voids , Monthly Notices of the Royal Astronomical Society 488
2019
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2019
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2019
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2019
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C. D. Kreisch, A. Pisani, C. Carbone, J. Liu, A. J. Hawken, E. Massara et al., Massive neutrinos leave fingerprints on cosmic voids , Monthly Notices of the Royal Astronomical Society 488
2019
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2020
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Y. Liu, Y. Yu, H.-R. Yu and P. Zhang, Neutrino effects on the morphology of cosmic large-scale structure , Phys. Rev. D 101
2020
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2021
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M. L. Golobart, On unbiased and higher-order large-scale structure statistics: Covariance Matrices and Minkowski Functionals , Ph.D. thesis, Ludwig-Maximilians-Universität München, April, 2021
2021
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2021
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2021
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2021
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2021
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2021
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A. Jiang, W. Liu and W. Fang, Minkowski Functionals of the Large Scale Structure as a Powerful Tool to Constrain the Modified Gravity , in preparation (2022)
2022
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Y. Zhong, W. Liu, A. Jiang and W. Fang, Testing gravity using the Minkowski Functionals of neutral hydrogen distribution , in preparation (2022)
2022
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2022
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W. Liu, A. Jiang and W. Fang, Probing massive neutrinos with the Minkowski functionals of the galaxy distribution , in preparation (2022)
2022
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