English

The Primordial Inflation Polarization Explorer (PIPER)

Instrumentation and Methods for Astrophysics 2015-06-22 v1

Abstract

The Primordial Inflation Polarization Explorer (PIPER) is a balloon-borne cosmic microwave background (CMB) polarimeter designed to search for evidence of inflation by measuring the large-angular scale CMB polarization signal. BICEP2 recently reported a detection of B-mode power corresponding to the tensor-to-scalar ratio r = 0.2 on ~2 degree scales. If the BICEP2 signal is caused by inflationary gravitational waves (IGWs), then there should be a corresponding increase in B-mode power on angular scales larger than 18 degrees. PIPER is currently the only suborbital instrument capable of fully testing and extending the BICEP2 results by measuring the B-mode power spectrum on angular scales θ\theta = ~0.6 deg to 90 deg, covering both the reionization bump and recombination peak, with sensitivity to measure the tensor-to-scalar ratio down to r = 0.007, and four frequency bands to distinguish foregrounds. PIPER will accomplish this by mapping 85% of the sky in four frequency bands (200, 270, 350, 600 GHz) over a series of 8 conventional balloon flights from the northern and southern hemispheres. The instrument has background-limited sensitivity provided by fully cryogenic (1.5 K) optics focusing the sky signal onto four 32x40-pixel arrays of time-domain multiplexed Transition-Edge Sensor (TES) bolometers held at 140 mK. Polarization sensitivity and systematic control are provided by front-end Variable-delay Polarization Modulators (VPMs), which rapidly modulate only the polarized sky signal at 3 Hz and allow PIPER to instantaneously measure the full Stokes vector (I, Q, U, V) for each pointing. We describe the PIPER instrument and progress towards its first flight.

Keywords

Cite

@article{arxiv.1407.2584,
  title  = {The Primordial Inflation Polarization Explorer (PIPER)},
  author = {Justin Lazear and Peter A. R. Ade and Dominic Benford and Charles L. Bennett and David T. Chuss and Jessie L. Dotson and Joseph R. Eimer and Dale J. Fixsen and Mark Halpern and Gene Hilton and James Hinderks and Gary F. Hinshaw and Kent Irwin and Christine Jhabvala and Bradley Johnson and Alan Kogut and Luke Lowe and Jeff J. McMahon and Timothy M. Miller and Paul Mirel and S. Harvey Moseley and Samelys Rodriguez and Elmer Sharp and Johannes G. Staguhn and Eric R. Switzer and Carole E. Tucker and Amy Weston and Edward J. Wollack},
  journal= {arXiv preprint arXiv:1407.2584},
  year   = {2015}
}

Comments

11 pages, 7 figures. To be published in Proceedings of SPIE Volume 9153. Presented at SPIE Astronomical Telescopes + Instrumentation 2014, conference 9153

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