XL-Calibur -- a second-generation balloon-borne hard X-ray polarimetry mission
Abstract
XL-Calibur is a hard X-ray (15-80 keV) polarimetry mission operating from a stabilised balloon-borne platform in the stratosphere. It builds on heritage from the X-Calibur mission, which observed the accreting neutron star GX 301-2 from Antarctica, between December 29th 2018 and January 1st 2019. The XL-Calibur design incorporates an X-ray mirror, which focusses X-rays onto a polarimeter comprising a beryllium rod surrounded by Cadmium Zinc Telluride (CZT) detectors. The polarimeter is housed in an anticoincidence shield to mitigate background from particles present in the stratosphere. The mirror and polarimeter-shield assembly are mounted at opposite ends of a 12 m long lightweight truss, which is pointed with arcsecond precision by WASP - the Wallops Arc Second Pointer. The XL-Calibur mission will achieve a substantially improved sensitivity over X-Calibur by using a larger effective area X-ray mirror, reducing background through thinner CZT detectors, and improved anticoincidence shielding. When observing a 1 Crab source for days, the Minimum Detectable Polarisation (at 99% confidence level) is 2. The energy resolution at 40 keV is 5.9 keV. The aim of this paper is to describe the design and performance of the XL-Calibur mission, as well as the foreseen science programme.
Keywords
Cite
@article{arxiv.2010.10608,
title = {XL-Calibur -- a second-generation balloon-borne hard X-ray polarimetry mission},
author = {Q. Abarr and H. Awaki and M. G. Baring and R. Bose and G. De Geronimo and P. Dowkontt and M. Errando and V. Guarino and K. Hattori and K. Hayashida and F. Imazato and M. Ishida and N. K. Iyer and F. Kislat and M. Kiss and T. Kitaguchi and H. Krawczynski and L. Lisalda and H. Matake and Y. Maeda and H. Matsumoto and T. Mineta and T. Miyazawa and T. Mizuno and T. Okajima and M. Pearce and B. F. Rauch and F. Ryde and C. Shreves and S. Spooner and T. -A. Stana and H. Takahashi and M. Takeo and T. Tamagawa and K. Tamura and H. Tsunemi and N. Uchida and Y. Uchida and A. T. West and E. A. Wulf and R. Yamamoto},
journal= {arXiv preprint arXiv:2010.10608},
year = {2020}
}
Comments
19 pages, 17 figures. Accepted for publication in Astroparticle Physics