Design and characterization of a balloon-borne diffraction-limited submillimeter telescope platform for BLAST-TNG
暂无分享,去创建一个
Mark J. Devlin | Joy Didier | Bradley Dober | Nicholas Galitzki | Federico Nati | Ian Lowe | Peter C. Ashton | Laura M. Fissel | Nathan P. Lourie | Philip Mauskopf | Giles Novak | Juan D. Soler | Paul A. Williams | Brian Catanzaro | L. J. Romualdez | Simon Dicker | Samuel Gordon | Jeffrey Klein | L. Javier Romualdez | Francisco E. Angile | P. Mauskopf | F. Nati | P. Williams | B. Catanzaro | M. Devlin | S. Dicker | J. Klein | L. Fissel | J. Soler | P. Ashton | J. Didier | B. Dober | N. Galitzki | S. Gordon | G. Novak | N. Lourie | F. E. Angile | I. Lowe
[1] Mark J. Devlin,et al. Design and fabrication of a lightweight 2-m telescope for the balloon-borne large-aperture submillimeter telescope: BLAST , 2002, SPIE Optics + Photonics.
[2] Mark J. Devlin,et al. BLAST autonomous daytime star cameras , 2006, SPIE Astronomical Telescopes + Instrumentation.
[3] Adrian T. Lee,et al. CMB-S4 Science Book, First Edition , 2016, 1610.02743.
[4] James A. Thomas,et al. Optical metrology for testing an all-composite 2-m-diameter mirror , 2001, SPIE Optics + Photonics.
[5] G. W. Pratt,et al. Planck intermediate results - XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes , 2014, 1409.5738.
[6] Enzo Pascale,et al. Instrumental performance and results from testing of the BLAST-TNG receiver, submillimeter optics, and MKID detector arrays , 2016, Astronomical Telescopes + Instrumentation.
[7] Nicholas Galitzki,et al. Magnetic fields in molecular clouds: The BLASTPol and BLAST-TNG experiments , 2016 .
[8] Tom L. Zobrist,et al. Use of a commercial laser tracker for optical alignment , 2007, SPIE Optical Engineering + Applications.
[9] Mark J. Devlin,et al. Preflight characterization of the BLAST-TNG receiver and detector arrays , 2018, Astronomical Telescopes + Instrumentation.
[10] V. Guillet,et al. Dust models compatible with Planck intensity and polarization data in translucent lines of sight , 2017, 1710.04598.
[11] P. A. R. Ade,et al. Thermal design and performance of the balloon-borne large aperture submillimeter telescope for polarimetry BLASTPol , 2014, Astronomical Telescopes and Instrumentation.
[12] G. W. Pratt,et al. Planck intermediate results XXXII. The relative orientation between the magnetic field and structures traced by interstellar dust , 2014, 1409.6728.
[13] J. J. Bock,et al. Attitude determination for balloon-borne experiments , 2014, Astronomical Telescopes and Instrumentation.
[14] C. B. Netterfield,et al. AN IMPRINT OF MOLECULAR CLOUD MAGNETIZATION IN THE MORPHOLOGY OF THE DUST POLARIZED EMISSION , 2013, 1303.1830.
[15] Enzo Pascale,et al. BALLOON-BORNE SUBMILLIMETER POLARIMETRY OF THE VELA C MOLECULAR CLOUD: SYSTEMATIC DEPENDENCE OF POLARIZATION FRACTION ON COLUMN DENSITY AND LOCAL POLARIZATION-ANGLE DISPERSION , 2015, 1509.05298.
[16] Alan E. Berger,et al. The Effect of Moisture on Carbon Fiber Reinforced Epoxy Composites. 1. Diffusion , 1976 .
[17] Brandon Hensley,et al. MAGNETIC NANOPARTICLES IN THE INTERSTELLAR MEDIUM: EMISSION SPECTRUM AND POLARIZATION , 2012, 1205.7021.
[18] Britt Reichborn-Kjennerud,et al. STARS: a software application for the EBEX autonomous daytime star cameras , 2014, Astronomical Telescopes and Instrumentation.
[19] Hideyuki Mori,et al. Design of the telescope truss and gondola for the balloon-borne X-ray polarimeter X-Calibur , 2017, 1701.04536.
[20] Annie Zavagno,et al. Filaments and ridges in Vela C revealed by Herschel: from low-mass to high-mass star-forming sites , 2011, 1108.0941.
[21] Adrian T. Lee,et al. The EBEX experiment , 2004, SPIE Optics + Photonics.
[22] C. B. Netterfield,et al. The relation between the column density structures and the magnetic field orientation in the Vela C molecular complex , 2017, 1702.03853.
[23] Hermann Bittner,et al. SOFIA primary mirror assembly: structural properties and optical performance , 2003, SPIE Astronomical Telescopes + Instrumentation.
[24] Joseph M. Augl,et al. The Effect of Moisture on Carbon Fiber REinforced Epoxy Composites. II. Mechanical Property Changes , 1977 .
[25] Britt Reichborn-Kjennerud,et al. A high-resolution pointing system for fast scanning platforms: The EBEX example , 2015, 2015 IEEE Aerospace Conference.
[26] E.,et al. THE OPTICAL DESIGN AND CHARACTERIZATION OF THE MICROWAVE ANISOTROPY PROBE , 2008 .
[27] Peter G. Martin,et al. Modelling and simulation of large-scale polarized dust emission over the southern Galactic cap using the GASS HI data , 2016, 1611.02418.
[28] Robert Bernier,et al. The JWST infrared Scanning Shack Hartman System: a new in-process way to measure large mirrors during optical fabrication at Tinsley , 2006, SPIE Astronomical Telescopes + Instrumentation.