• Chue, Dalal, White, Some assembly required: assembly bias in massive dark matter halos,  arXiv:1804.04055
  • Lucie-Smith et al, Machine learning cosmological structure formation, arXiv:1802.04271
  • Watts, Wang, et al., A Projected Estimate of the Reionization Optical Depth Using the CLASS Experiment's Sample-Variance Limited E-Mode Measurement, arXiv:1801.01481
  • Hurier, Angulo, Measuring the hydrostatic mass bias in galaxy clusters by combining Sunyaev-Zel'dovich and CMB lensing data, arXiv:1711.06029
  • Kandel, Lazarian, Pogosyan,  Statistical properties of galactic CMB foregrounds: dust and synchrotron, arXiv:1711.03161
  • Emami, Broadhurst, Jimeno, Smoot, Angulo, Lim, Chu, Lazkoz, Evidence of Neutrino Enhanced Clustering in a Complete Sample of Sloan Survey Clusters, Implying ∑mν=0.11±0.03eV, arXiv:1711.05210
  • Schmittfull, Seljak, Parameter constraints from cross-correlation of CMB lensing with galaxy clustering, arXiv:1710.09465
  • Meyers, Meerburg, van Engelen, Battaglia, Beyond CMB cosmic variance limits on reionization with the polarized SZ effectarXiv:1710.01708
  • Kolopanis, Mauskopf, Bowman, Detectability of Galactic Faraday Rotation in Multi-wavelength CMB Observations: A Cross-Correlation Analysis of CMB and Radio MapsarXiv:1710.02564
  • Linde, On the problem of initial conditions for inflationarXiv:1710.04278
  • Shiraishi, Liguori, Fergusson, CMB bounds on tensor-scalar-scalar inflationary correlationsarXiv:1710.06778
  • Nakama, Carr, Silk, Limits on primordial black holes from μ distortions in cosmic microwave backgroundarXiv:1710.06945
  • Prince, Moodley, Ridl, Bucher, Real space lensing reconstruction using cosmic microwave background polarizationarXiv:1709.02227
  • Alonso, Hill, Hložek, Spergel, Measurement of the thermal Sunyaev-Zel'dovich effect around cosmic voidsarXiv:1709.01489

...