English

The Cosmic Infrared Background Experiment (CIBER): A Sounding Rocket Payload to Study the Near Infrared Extragalactic Background Light

Instrumentation and Methods for Astrophysics 2015-06-03 v1 Cosmology and Nongalactic Astrophysics

Abstract

The Cosmic Infrared Background Experiment (CIBER) is a suite of four instruments designed to study the near infrared (IR) background light from above the Earth's atmosphere. The instrument package comprises two imaging telescopes designed to characterize spatial anisotropy in the extragalactic IR background caused by cosmological structure during the epoch of reionization, a low resolution spectrometer to measure the absolute spectrum of the extragalactic IR background, and a narrow band spectrometer optimized to measure the absolute brightness of the Zodiacal light foreground. In this paper we describe the design and characterization of the CIBER payload. The detailed mechanical, cryogenic, and electrical design of the system are presented, including all system components common to the four instruments. We present the methods and equipment used to characterize the instruments before and after flight, and give a detailed description of CIBER's flight profile and configurations. CIBER is designed to be recoverable and has flown twice, with modifications to the payload having been informed by analysis of the first flight data. All four instruments performed to specifications during the second flight, and the scientific data from this flight are currently being analyzed.

Keywords

Cite

@article{arxiv.1112.1424,
  title  = {The Cosmic Infrared Background Experiment (CIBER): A Sounding Rocket Payload to Study the Near Infrared Extragalactic Background Light},
  author = {M. Zemcov and T. Arai and J. Battle and J. Bock and A. Cooray and V. Hristov and B. Keating and M. G. Kim and D. H. Lee and L. R. Levenson and P. Mason and T. Matsumoto and S. Matsuura and U. W. Nam and T. Renbarger and I. Sullivan and K. Suzuki and K. Tsumura and T. Wada},
  journal= {arXiv preprint arXiv:1112.1424},
  year   = {2015}
}

Comments

17 pages, 16 figures, submitted to ApJS September 9, 2011; accepted November 20, 2011 as part of CIBER Instrument Special Issue