English

A Demonstration of Improved Constraints on Primordial Gravitational Waves with Delensing

Cosmology and Nongalactic Astrophysics 2021-02-02 v2

Abstract

We present a constraint on the tensor-to-scalar ratio, rr, derived from measurements of cosmic microwave background (CMB) polarization BB-modes with "delensing," whereby the uncertainty on rr contributed by the sample variance of the gravitational lensing BB-modes is reduced by cross-correlating against a lensing BB-mode template. This template is constructed by combining an estimate of the polarized CMB with a tracer of the projected large-scale structure. The large-scale-structure tracer used is a map of the cosmic infrared background derived from Planck satellite data, while the polarized CMB map comes from a combination of South Pole Telescope, BICEP/Keck, and Planck data. We expand the BICEP/Keck likelihood analysis framework to accept a lensing template and apply it to the BICEP/Keck data set collected through 2014 using the same parametric foreground modelling as in the previous analysis. From simulations, we find that the uncertainty on rr is reduced by 10%\sim10\%, from σ(r)\sigma(r)= 0.024 to 0.022, which can be compared with a 26%\sim26\% reduction obtained when using a perfect lensing template. Applying the technique to the real data, the constraint on rr is improved from r0.05<0.090r_{0.05} < 0.090 to r0.05<0.082r_{0.05} < 0.082 (95\% C.L.). This is the first demonstration of improvement in an rr constraint through delensing.

Keywords

Cite

@article{arxiv.2011.08163,
  title  = {A Demonstration of Improved Constraints on Primordial Gravitational Waves with Delensing},
  author = {BICEP/Keck and SPTpol Collaborations and : and P. A. R. Ade and Z. Ahmed and M. Amiri and A. J. Anderson and J. E. Austermann and J. S. Avva and D. Barkats and R. Basu Thakur and J. A. Beall and A. N. Bender and B. A. Benson and F. Bianchini and C. A. Bischoff and L. E. Bleem and J. J. Bock and H. Boenish and E. Bullock and V. Buza and J. E. Carlstrom and C. L. Chang and J. R. Cheshire and H. C. Chiang and T-L. Chou and R. Citron and J. Connors and C. Corbett Moran and J. Cornelison and T. M. Crawford and A. T. Crites and M. Crumrine and A. Cukierman and T. de Haan and M. Dierickx and M. A. Dobbs and L. Duband and W. Everett and S. Fatigoni and J. P. Filippini and S. Fliescher and J. Gallicchio and E. M. George and T. St. Germaine and N. Goeckner-Wald and D. C. Goldfinger and J. Grayson and N. Gupta and G. Hall and M. Halpern and N. W. Halverson and S. Harrison and S. Henderson and J. W. Henning and S. R. Hildebrandt and G. C. Hilton and G. P. Holder and W. L. Holzapfel and J. D. Hrubes and N. Huang and J. Hubmayr and H. Hui and K. D. Irwin and J. Kang and K. S. Karkare and E. Karpel and S. Kefeli and S. A. Kernasovskiy and L. Knox and J. M. Kovac and C. L. Kuo and K. Lau and A. T. Lee and E. M. Leitch and D. Li and A. Lowitz and A. Manzotti and J. J. McMahon and K. G. Megerian and S. S. Meyer and M. Millea and L. M. Mocanu and L. Moncelsi and J. Montgomery and A. Nadolski and T. Namikawa and T. Natoli and C. B. Netterfield and H. T. Nguyen and J. P. Nibarger and G. Noble and V. Novosad and R. O'Brient and R. W. Ogburn and Y. Omori and S. Padin and S. Palladino and S. Patil and T. Prouve and C. Pryke and B. Racine and C. L. Reichardt and C. D. Reintsema and S. Richter and J. E. Ruhl and B. R. Saliwanchik and K. K. Schaffer and A. Schillaci and B. L. Schmitt and R. Schwarz and C. D. Sheehy and C. Sievers and G. Smecher and A. Soliman and A. A. Stark and B. Steinbach and R. V. Sudiwala and G. P. Teply and K. L. Thompson and J. E. Tolan and C. Tucker and A. D. Turner and C. Umiltà and T. Veach and J. D. Vieira and A. G. Vieregg and A. Wandui and G. Wang and A. C. Weber and N. Whitehorn and D. V. Wiebe and J. Willmert and C. L. Wong and W. L. K. Wu and H. Yang and V. Yefremenko and K. W. Yoon and E. Young and C. Yu and L. Zeng and C. Zhang},
  journal= {arXiv preprint arXiv:2011.08163},
  year   = {2021}
}

Comments

23 pages, 11 figures; match published version