Ultra High Energy Cosmology with POLARBEAR
B. Keating, S. Moyerman, D. Boettger, J. Edwards, G. Fuller, F., Matsuda, N. Miller, H. Paar, G. Rebeiz, I. Schanning, M. Shimon, N. Stebor,, K. Arnold, D. Flanigan, W. Holzapfel, J. Howard, Z. Kermish, A. Lee, M., Lungu, M. Myers, H. Nishino, R. O'Brient, E. Quealy

TL;DR
POLARBEAR is a ground-based telescope designed to detect primordial gravitational waves and lensing effects in the CMB's polarization, aiming to improve sensitivity and test inflationary models at high energies.
Contribution
It introduces a highly sensitive array of TES bolometers on a 3.5m telescope targeting B-mode polarization with unprecedented precision.
Findings
Designed to reach tensor-to-scalar ratio of 0.025
Achieved an engineering run in 2010
Aims to improve constraints on inflationary models
Abstract
Observations of the temperature anisotropy of the Cosmic Microwave Background (CMB) lend support to an inflationary origin of the universe, yet no direct evidence verifying inflation exists. Many current experiments are focussing on the CMB's polarization anisotropy, specifically its curl component (called "B-mode" polarization), which remains undetected. The inflationary paradigm predicts the existence of a primordial gravitational wave background that imprints a unique B-mode signature on the CMB's polarization at large angular scales. The CMB B-mode signal also encodes gravitational lensing information at smaller angular scales, bearing the imprint of cosmological large scale structures (LSS) which in turn may elucidate the properties of cosmological neutrinos. The quest for detection of these signals; each of which is orders of magnitude smaller than the CMB temperature anisotropy…
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Taxonomy
TopicsCosmology and Gravitation Theories · Radio Astronomy Observations and Technology · Superconducting and THz Device Technology
