Gas bearing slumping and figure correction of X-ray telescope mirror substrates

被引:1
作者
Chalifoux, Brandon [1 ]
Zuo, Heng [1 ]
Wright, Graham [2 ]
Yao, Youwei [1 ]
Heilmann, Ralf K. [3 ]
Schattenburg, Mark L. [3 ]
机构
[1] MIT, Dept Mech Engn, Cambridge, MA 02139 USA
[2] MIT, Plasma Sci & Fus Ctr, Cambridge, MA 02139 USA
[3] MIT, Kavli Inst, Space Nanotechnol Lab, Cambridge, MA 02139 USA
来源
SPACE TELESCOPES AND INSTRUMENTATION 2016: ULTRAVIOLET TO GAMMA RAY | 2016年 / 9905卷
关键词
X-ray mirrors; slumping; thermo-forming; figure correction; ion implantation; glass; OPTICS;
D O I
10.1117/12.2232500
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Figure correction of thin x-ray telescope mirrors may be critical for future missions that require high angular resolution and large collecting areas. One promising method of providing figure correction is to use stress generated via ion implantation. Since stress-based figure correction strategies cannot correct high spatial frequency errors, it is critical to obtain glass with only low spatial frequency error. One method is thermal gas bearing slumping, where glass is softened while floating on thin films of gas. This method avoids introducing mid-or high-spatial frequency errors by eliminating contact between the glass and mandrel. Together, these two methods form a promising approach to fabricating mirrors for a high angular resolution, large-area x-ray observatory. In this paper we report on progress in understanding gas bearing slumping, and advancing the technology to curved geometry. We also report on continued progress on advancing the ion implantation technology toward correcting flight-sized mirror substrates.
引用
收藏
页数:12
相关论文
共 12 条
[1]   Improved Control and Characterization of Adjustable X-ray Optics [J].
Allured, Ryan ;
Ben-Ami, Sagi ;
Cotroneo, Vincenzo ;
Marquez, Vanessa ;
McMuldroch, Stuart ;
Reid, Paul B. ;
Schwartz, Daniel A. ;
Trolier-McKinstry, Susan ;
Vikhlinin, Alexey A. ;
Wallace, Margeaux L. .
OPTICS FOR EUV, X-RAY, AND GAMMA-RAY ASTRONOMY VII, 2015, 9603
[2]  
[Anonymous], 2006, Planning algorithms
[3]   Differential deposition correction of segmented glass X-ray optics [J].
Atkins, Carolyn ;
Kilaru, Kiranmayee ;
Ramsey, Brian D. ;
Broadway, David M. ;
Gubarev, Mikhail V. ;
O'Dell, Stephen L. ;
Zhang, William W. .
OPTICS FOR EUV, X-RAY, AND GAMMA-RAY ASTRONOMY VII, 2015, 9603
[4]   Ion implantation for figure correction of thin X-ray telescope mirror substrates [J].
Chalifoux, Brandon ;
Wright, Graham ;
Heilmann, Ralf K. ;
Schattenburg, Mark L. .
OPTICS FOR EUV, X-RAY, AND GAMMA-RAY ASTRONOMY VII, 2015, 9603
[5]   Metrology of thin transparent optics using Shack-Hartmann wavefront sensing [J].
Forest, CR ;
Canizares, CR ;
Neal, DR ;
McGuirk, M ;
Schattenburg, ML .
OPTICAL ENGINEERING, 2004, 43 (03) :742-753
[6]   Ion tracks in quartz and vitreous silica [J].
Klaumünzer, S .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 2004, 225 (1-2) :136-153
[7]   Progress report on air bearing slumping of thin glass mirrors for x-ray telescopes [J].
Schattenburg, Mark L. ;
Chalifoux, Brandon ;
DeTienne, Michael D. ;
Heilmann, Ralf K. ;
Zuo, Heng .
OPTICS FOR EUV, X-RAY, AND GAMMA-RAY ASTRONOMY VII, 2015, 9603
[8]   Progress report on using magneto-strictive sputtered thin films to modify the shape of a X-ray telescope mirror [J].
Ulmer, Melville P. ;
Wang, Xiaoli ;
Cao, Jian ;
Savoie, Julia ;
Bellavia, Bridget ;
Graham, Michael E. ;
Vaynman, Semyon .
ADAPTIVE X-RAY OPTICS II, 2012, 8503
[9]   Beyond Chandra - the X-ray Surveyor [J].
Weisskopf, Martin C. ;
Gaskin, Jessica ;
Tananbaum, Harvey ;
Vikhlinin, Alexey .
EUV AND X-RAY OPTICS: SYNERGY BETWEEN LABORATORY AND SPACE IV, 2015, 9510
[10]   Two-Dimensional Differential Deposition: Figure Correction of Thin-Shell Mirror Substrates for X-ray Astronomy [J].
Windt, David L. ;
Conley, Ray .
OPTICS FOR EUV, X-RAY, AND GAMMA-RAY ASTRONOMY VII, 2015, 9603