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Astron. Soc., vol. 425, pp. 1129– 1169, 2012, 1202.0057. [128] G. Xxxxxx, X. Pajer, and D. xxx xxx Xxxxx, “Spectral distortion aniso- tropies from single-field inflation,” 2018, 1805.08775. [129] X. Xxxxx, X. Xxxx, X. Xxxxxxx, and X. Xxxxxxxx, “The imprints of pri- mordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects,” Phys. Rev., vol. D77, p. 123514, 2008, 0710.4560. [130] X. Xxxx et al., “Cosmology with the SPHEREX All-Sky Spectral Sur- vey,” 2014, 1412.4872. [131] X. X. Xxxxxxx, X. X. Xxxx, X. X. Xxxxxxxxx, and T. J. L. W. Lazio, “The Square Kilometre Array,” IEEE Proceedings, vol. 97, pp. 1482–1496, Aug. 2009. [132] Y.-X. Xx and Y.-Z. Ma, “Constraints on Primordial non-Gaussianity from Future HI Intensity Mapping Experiments,” Phys. Rev., vol. D96, no. 6, p. 063525, 2017, 1701.00221. [133] X. X. Xxxxxx et al., “Observation of Gravitational Waves from a Binary Black Hole Merger,” Phys. Rev. Lett., vol. 116, no. 6, p. 061102, 2016, 1602.03837. [134] X. X. Xxxxx et al., “Gravitational-wave cosmology across 29 decades in frequency,” Phys. Rev., vol. X6, no. 1, p. 011035, 2016, 1511.05994. [135] X. X. Xxxxxxxx, X. Xxxxxxx, X. Xxxxxxx, and X. Xxxxxxxxx, “Gravitational waves from inflation,” Riv. Nuovo Cim., vol. 39, no. 9, pp. 399–495, 2016, 1605.01615. [136] X. Xxxx, X. Xxxxxx, and X. Xxxxxxxx, “Primordial Black Holes as Dark Matter,” Phys. Rev., vol. D94, no. 8, p. 083504, 2016, 1607.06077. [137] X. Xxxxxxx and X. XxXxxxxxxx, Inflation and String Theory. Cam- bridge Monographs on Mathematical Physics, Cambridge University Press, 2015, 1404.2601. [138] A. Achúcarro, V. Xxxx, X. Xxxxxxx, and X. X. Xxxxx, “Cumulative effects in inflation with ultra-light entropy modes,” JCAP, vol. 1702, no. 02, p. 013, 2017, 1607.08609. [139] A. Achúcarro, X. Xxxxxxx, X. Xxxxx, X.-X. Xxxx, and X. Xxxxxxx, “Uni- versality of multi-field α-attractors,” JCAP, vol. 1804, no. 04, p. 028, 2018, 1711.09478. [140] A. Achúcarro, V. Xxxx, and X. Xxxxxxx, “On the viability of m2φ2 and natural inflation,” JCAP, vol. 1507, p. 008, 2015, 1503.07486. [141] X. Xxxxxxx, D. xxx xxx Xxxxx, and X. Xxxxx, “Lifting Primordial Non- Gaussianity Above the Noise,” JCAP, vol. 1608, no. 08, p. 044, 2016, 1605.06426.

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Astron. Soc., vol. 42590, pp. 1129– 1169668–678, 2012, 1202.00571930. [12810] G. X. xx Xxxxxx, X. Pajer, “Xxxxxxxx’x theory of gravitation and D. xxx xxx Xxxxx, “Spectral distortion aniso- tropies from single-field inflationits astronomical con- sequences,” 2018Mon. Not. Xxx. Astron. Soc., 1805.08775vol. 78, pp. 3–28, 1917. [12911] X. Xxxxx, X. Xxxx, X. Xxxxxxx, “Nebulae,” Proceedings of the American Philosophical So- ciety, vol. 56, pp. 403–409, 1917. [12] X. Xxxxxxxxx, “On the curvature of space,” Z. Phys., vol. 10, p. 377–386, 1922. [Gen. Rel. Grav.31,1991 (1999)]. [13] X. Xxxxxxxxx, “On the Possibility of a world with constant negative curvature of space,” Z. Phys., vol. 21, pp. 326–332, 1924. [Gen. Rel. Grav.31,2001(1999)]. [14] X. Xxxxxxxx, “A Homogeneous Universe of Constant Mass and Growing Radius Accounting for the Radial Velocity of Extragalactic Nebulae,” Annales Soc. Sci. Bruxelles A, vol. 47, pp. 49–59, 1927. [Gen. Rel. Grav.45,no.8,1635(2013)]. [15] X. X. Xxxxxxxxx, “Kinematics and World-Structure,” Astrophys. J., vol. 82, pp. 284–301, 1935. [16] X. X. Xxxxxx, “On Xxxxx’x theory of world-structure,” Proceedings of the London Mathematical Society, vol. 42, p. 90–127, 1937. [17] X. X. Xxxxxx, “Extragalactic nebulae,” Astrophys. J., vol. 64, pp. 321– 369, 1926. [18] X. X. Xxxxxxxxx, The Mathematical Theory of Relativity. 1924. [19] X. Xxxxxxxx, “Note on de sitter’s universe,” Journal of mathematics and physics, vol. 4, no. 1-4, pp. 188–192, 1925. [20] X. Xxxxxx, “A relation between distance and radial velocity among extra- galactic nebulae,” Proc. Nat. Acad. Sci., vol. 15, pp. 168–173, 1929. [21] X. Xxxxxxxx, “The imprints of pri- mordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objectsexpanding universe,” PhysGen. Rel. Rev., vol. D77, p. 123514, 2008, 0710.4560. [130] X. Xxxx et al., “Cosmology with the SPHEREX All-Sky Spectral Sur- vey,” 2014, 1412.4872. [131] X. X. Xxxxxxx, X. X. Xxxx, X. X. Xxxxxxxxx, and T. J. L. W. Lazio, “The Square Kilometre Array,” IEEE Proceedings, vol. 97, pp. 1482–1496, Aug. 2009. [132] Y.-X. Xx and Y.-Z. Ma, “Constraints on Primordial non-Gaussianity from Future HI Intensity Mapping Experiments,” Phys. Rev., vol. D96, no. 6, p. 063525, 2017, 1701.00221. [133] X. X. Xxxxxx et al., “Observation of Gravitational Waves from a Binary Black Hole Merger,” Phys. Rev. LettGrav., vol. 116, no. 6, p. 061102, 2016, 1602.03837. [134] X. X. Xxxxx et al., “Gravitational-wave cosmology across 29 decades in frequency,” Phys. Rev., vol. X6, no. 1, p. 011035, 2016, 1511.05994. [135] X. X. Xxxxxxxx, X. Xxxxxxx, X. Xxxxxxx, and X. Xxxxxxxxx, “Gravitational waves from inflation,” Riv. Nuovo Cim., vol. 39, no. 929, pp. 399–495641–680, 2016, 1605.016151997. [136] X. Xxxx, X. Xxxxxx, and X. Xxxxxxxx, “Primordial Black Holes as Dark Matter,” PhysAnnales Soc. Rev., volSci. D94, no. 8, p. 083504, 2016, 1607.06077. [137] X. Xxxxxxx and X. XxXxxxxxxx, Inflation and String Theory. Cam- bridge Monographs on Mathematical Physics, Cambridge University Press, 2015, 1404.2601. [138] A. Achúcarro, V. Xxxx, X. Xxxxxxx, and X. X. Xxxxx, “Cumulative effects in inflation with ultra-light entropy modes,” JCAP, vol. 1702, no. 02, p. 013, 2017, 1607.08609. [139] A. Achúcarro, X. Xxxxxxx, X. Xxxxx, X.-X. Xxxx, and X. Xxxxxxx, “Uni- versality of multi-field α-attractors,” JCAP, vol. 1804, no. 04, p. 028, 2018, 1711.09478. [140] A. Achúcarro, V. Xxxx, and X. Xxxxxxx, “On the viability of m2φ2 and natural inflation,” JCAP, vol. 1507, p. 008, 2015, 1503.07486. [141] X. Xxxxxxx, D. xxx xxx Xxxxx, and X. Xxxxx, “Lifting Primordial Non- Gaussianity Above the Noise,” JCAP, vol. 1608, no. 08, p. 044, 2016, 1605.06426Bruxelles A53,51(1933)].

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Astron. Soc., vol. 425427, pp. 1129– 1169p. 2537, 2012, 1202.00571207.1465. [128164] G. XxxxxxX. Xxxx, X. PajerXxxxxxxxxxxx, and D. xxx xxx Xxxxx, “Spectral distortion aniso- tropies from single-field inflation,” 2018, 1805.08775. [129] X. Xxxxx, X. Xxxxxxxx, and U. A. Xxxxxxxxx, “Large scale structure from viscous dark matter,” JCAP, vol. 1511, p. 049, 2015, 1507.06665. [165] X. Xxxx, X. XxxxxxxXxxxx, X. X. Xxxxxx, and X. XxxxxxxxXxxxxxxxxx, “The imprints Time-Sliced Perturbation Theory for Large Scale Structure I: General Formalism,” JCAP, vol. 1607, no. 07, p. 052, 2016, 1512.05807. [166] X. Xxxxxxx and X. Xxxxxxxxxxx, “Generation of pri- mordial non-gaussianities on large-scale structure: scale dependent bias Vorticity and abundance of virialized objectsVelocity Dispersion by Orbit Crossing,” Phys. Rev., vol. D77D80, p. 123514043504, 20082009, 0710.45600809.4606. [130167] X. Xxxx et al.Xxxxxxxx, “Cosmology with the SPHEREX All-Sky Spectral Sur- veyImpact of shell crossing and scope of perturbative appro- aches, in real and redshift space,” 2014, 1412.4872. [131] X. X. Xxxxxxx, X. X. Xxxx, X. X. Xxxxxxxxx, and T. J. L. W. Lazio, “The Square Kilometre Array,” IEEE Proceedings, vol. 97, pp. 1482–1496, Aug. 2009. [132] Y.-X. Xx and Y.-Z. Ma, “Constraints on Primordial non-Gaussianity from Future HI Intensity Mapping Experiments,” Phys. Rev., vol. D96, no. 6, p. 063525, 2017, 1701.00221. [133] X. X. Xxxxxx et alAstron., “Observation of Gravitational Waves from a Binary Black Hole Merger,” Phys. Rev. LettAstrophys., vol. 116, no. 6526, p. 061102A67, 2016Feb. 2011, 1602.038371009.0106. [134168] X. X. Xxxxx et al., “Gravitational-wave cosmology across 29 decades in frequency,” Phys. Rev., vol. X6, no. 1, p. 011035, 2016, 1511.05994. [135] X. X. Xxxxxxxx, X. Xxxxxxx, X. Xxxxxxx, and X. 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Xxxxx, “Cumulative effects On the velocity in inflation with ultra-light entropy modesthe Effective Field Theory of Large Scale Structures,” JCAP, vol. 1702, no. 021403, p. 013006, 20172014, 1607.086091307.3220. [139179] A. AchúcarroM. Xxxxxxxxx, X. Xxxxxxx, X. Xxxxx, X.-X. XxxxSchmidt, and X. XxxxxxxXxxxxxxxxxx, “Uni- versality of multi-field α-attractors,” JCAP, vol. 1804, no. 04, p. 028, 2018, 1711.09478. [140] A. Achúcarro, V. Xxxx, Biased Tracers and X. Xxxxxxx, “On the viability of m2φ2 and natural inflationTime Evolution,” JCAP, vol. 1507, no. 07, p. 008030, 2015, 1503.074861412.5169. [141180] J. J. M. Xxxxxxxx, X. Xxxxxxx, X. Xxxxx, and X. Xxxxxxxx, “The 2-loop matter power spectrum and the IR-safe integrand,” JCAP, vol. 1407, p. 056, 2014, 1304.4946. [181] X. Xxxxxxx, D. xxx xxx XxxxxX. Xxxxxxxx, X. Xxxxxxxxx, and X. 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Astron. Soc.Italiana, vol84:592. 425Xxxxxxxxxx, pp. 1129– 1169X., 2012, 1202.0057. [128] G. XxxxxxXxxxxxxx, X. PajerX., and D. xxx xxx Xxxxxxx, P. (2005). Absorption and scattering by inter- stellar dust: an XMM-Xxxxxx observation of <ASTROBJ>Cyg X-2</ASTROBJ>. ACA, 444:187–200. Xxxxxxxxxx, X., Xxxxx, “Spectral distortion aniso- tropies from single-field inflation,” 2018X., 1805.08775. [129] X. Xxxxx, X. Xxxx, X. Xxxxxxx, and X. Xxxxxxxx, “The imprints of pri- mordial non-gaussianities on large-scale structure: scale dependent bias and abundance of virialized objects,” Phys. Rev., vol. D77, p. 123514, 2008, 0710.4560. [130] X. Xxxx et al., “Cosmology with the SPHEREX All-Sky Spectral Sur- vey,” 2014, 1412.4872. [131] X. X. Xxxxxxx, X. X. X., in’t Xxxx, X. X. XxxxxxxxxX., and T. J. L. W. Lazio, “The Square Kilometre Array,” IEEE Proceedings, vol. 97, pp. 1482–1496, Aug. 2009. [132] Y.-X. Xx and Y.-Z. Ma, “Constraints on Primordial non-Gaussianity from Future HI Intensity Mapping Experiments,” Phys. Rev., vol. D96, no. 6, p. 063525, 2017, 1701.00221. [133] X. X. Xxxxxx et al., “Observation of Gravitational Waves from a Binary Black Hole Merger,” Phys. Rev. Lett., vol. 116, no. 6, p. 061102, 2016, 1602.03837. [134] X. X. Xxxxx et al., “Gravitational-wave cosmology across 29 decades in frequency,” Phys. Rev., vol. X6, no. 1, p. 011035, 2016, 1511.05994. [135] X. X. Xxxxxxxx, X. X., Xxxxxx, X., Xxx- xxx, X., xx Xxxxx, X. X., and Xxxxxx, L. B. F. M. (2012). XMM-Xxxxxx observation of 4U 1820-30. Broad band spectrum and the contribution of the cold interstellar medium. ACA, 539:A32. Xxxx, T. M., Xxxxxxxx, D., and Xxxxxxxx, P. (2001). The Milky Way in Molecular Clouds: A New Complete CO Survey. ApJ, 547:792–813. xx Xxxxx, X. X., Xxx, X., Xxxxxx, L. B. F. M., Xxxxxxxxx, J. A. D. L., and Xxxxxx, X. (2010). Determining the forsterite abundance of the dust around asymptotic giant branch stars. ACA, 516:A86. xx Xxxxx, X. X. and Xxxxxxxxxx, X. (2009). Physical properties of amorphous solid interstellar material from X-ray absorption spectroscopy of <ASTROBJ>Scorpius X-1</ASTROBJ>. ACA, 497:393–398. Xxxxxxxxx, X., Xxxxxxxx, X., Xxxxxxx, X. XxxxxxxX., Xxxxxx, X., and X. Xxxxxxxxx, “Gravitational waves from inflation,” Riv. Nuovo Cim., vol. 39, no. 9, pp. 399–495, 2016, 1605.01615. [136] X. XxxxXxxxxxxx, X. (1995). Steps toward interstellar silicate mineralogy. II. Study of Mg-Fe-silicate glasses of variable composition. ACA, 300:503. Xxxxxx, and X. Xxxxxxxx, “Primordial Black Holes as Dark Matter,” Phys. Rev., vol. D94, no. 8, p. 083504, 2016, 1607.06077. [137] X. Xxxxxxx and X. XxXxxxxxxx, Inflation and String Theory. Cam- bridge Monographs on Mathematical Physics, Cambridge University Press, 2015, 1404.2601. [138] A. Achúcarro, V. Xxxx, X. Xxxxxxx, and X. X. Xxxxx(2003). Scattering by Interstellar Dust Grains. II. X-Rays. ApJ, “Cumulative effects in inflation with ultra-light entropy modes,” JCAP, vol. 1702, no. 02, p. 013, 2017, 1607.08609. [139] A. Achúcarro, X. Xxxxxxx, X. Xxxxx, X.-X. Xxxx, and X. Xxxxxxx, “Uni- versality of multi-field α-attractors,” JCAP, vol. 1804, no. 04, p. 028, 2018, 1711.09478. [140] A. Achúcarro, V. Xxxx, and X. Xxxxxxx, “On the viability of m2φ2 and natural inflation,” JCAP, vol. 1507, p. 008, 2015, 1503.07486. [141] X. Xxxxxxx, D. xxx xxx Xxxxx, and X. Xxxxx, “Lifting Primordial Non- Gaussianity Above the Noise,” JCAP, vol. 1608, no. 08, p. 044, 2016, 1605.06426598:1026–1037.

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