PICO: Probe of Inflation and Cosmic Origins
Abstract
The Probe of Inflation and Cosmic Origins (PICO) is an imaging polarimeter that will scan the sky for 5 years in 21 frequency bands spread between 21 and 799 GHz. It will produce full-sky surveys of intensity and polarization with a final combined-map noise level of 0.87 K arcmin for the required specifications, equivalent to 3300 Planck missions, and with our current best-estimate would have a noise level of 0.61 K arcmin (6400 Planck missions). PICO will either determine the energy scale of inflation by detecting the tensor to scalar ratio at a level , or will rule out with more than all inflation models for which the characteristic scale in the potential is the Planck scale. With LSST's data it could rule out all models of slow-roll inflation. PICO will detect the sum of neutrino masses at , constrain the effective number of light particle species with , and elucidate processes affecting the evolution of cosmic structures by measuring the optical depth to reionization with errors limited by cosmic variance and by constraining the evolution of the amplitude of linear fluctuations with sub-percent accuracy. Cross-correlating PICO's map of the thermal Sunyaev-Zeldovich effect with LSST's gold sample of galaxies will precisely trace the evolution of thermal pressure with . PICO's maps of the Milky Way will be used to determine the make up of galactic dust and the role of magnetic fields in star formation efficiency. With 21 full sky legacy maps in intensity and polarization, which cannot be obtained in any other way, the mission will enrich many areas of astrophysics. PICO is the only single-platform instrument with the combination of sensitivity, angular resolution, frequency bands, and control of systematic effects that can deliver this compelling, timely, and broad science.
Keywords
Cite
@article{arxiv.1902.10541,
title = {PICO: Probe of Inflation and Cosmic Origins},
author = {Shaul Hanany and Marcelo Alvarez and Emmanuel Artis and Peter Ashton and Jonathan Aumont and Ragnhild Aurlien and Ranajoy Banerji and R. Belen Barreiro and James G. Bartlett and Soumen Basak and Nick Battaglia and Jamie Bock and Kimberly K. Boddy and Matteo Bonato and Julian Borrill and François Bouchet and François Boulanger and Blakesley Burkhart and Jens Chluba and David Chuss and Susan E. Clark and Joelle Cooperrider and Brendan P. Crill and Gianfranco De Zotti and Jacques Delabrouille and Eleonora Di Valentino and Joy Didier and Olivier Doré and Hans K. Eriksen and Josquin Errard and Tom Essinger-Hileman and Stephen Feeney and Jeffrey Filippini and Laura Fissel and Raphael Flauger and Unni Fuskeland and Vera Gluscevic and Krzysztof M. Gorski and Dan Green and Brandon Hensley and Diego Herranz and J. Colin Hill and Eric Hivon and Renée Hložek and Johannes Hubmayr and Bradley R. Johnson and William Jones and Terry Jones and Lloyd Knox and Al Kogut and Marcos López-Caniego and Charles Lawrence and Alex Lazarian and Zack Li and Mathew Madhavacheril and Jean-Baptiste Melin and Joel Meyers and Calum Murray and Mattia Negrello and Giles Novak and Roger O'Brient and Christopher Paine and Tim Pearson and Levon Pogosian and Clem Pryke and Giuseppe Puglisi and Mathieu Remazeilles and Graca Rocha and Marcel Schmittfull and Douglas Scott and Peter Shirron and Ian Stephens and Brian Sutin and Maurizio Tomasi and Amy Trangsrud and Alexander van Engelen and Flavien Vansyngel and Ingunn K. Wehus and Qi Wen and Siyao Xu and Karl Young and Andrea Zonca},
journal= {arXiv preprint arXiv:1902.10541},
year = {2019}
}
Comments
Probe class mission study submitted to NASA and 2020 Decadal Panel. Executive summary: 2.5 pages; Science: 28 pages; Total: 50 pages, 36 figures