首页> 外文会议>Conference on ground-based and airborne instrumentation for astronomy >A single-shot optical linear polarimeter for asteroid studies
【24h】

A single-shot optical linear polarimeter for asteroid studies

机译:用于小行星研究的单次光学线性偏振仪

获取原文

摘要

Polarimetric studies of minor Solar System bodies are useful to access physical parameters, such as albedo anddiameter, which are both important and difficult to derive by other techniques. Current activities in this field are limitedsince most instruments adopted in recent observing campaigns involve photomultipliers detectors. These sensors aresuitable for observations of objects with fast polarization variations, but usually suffer from low quantum efficiency.This severely limits the number of accessible targets. For asteroids, the polarization evolves slowly enough to allowmore sensitive albeit slower detectors (CCD-based polarimeters). However, polarimetric measurement accuracy may behampered with usual "sequential" polarimeters. Indeed, retarder plate swapping time, readout and exposure time add up.Consequently, the time laps between complementary polarization measurements (some minutes) may be non-negligiblein some cases, compared to the evolution time of the polarization parameters. Moreover, polarimetric accuracy may alsobe limited by airmass variations between complementary exposures.We are developing a new "single-shot" CCD polarimeter based on a "double-Wollaston" configuration alreadydescribed in literature [9][10]. This allows simultaneous acquisition of the three Stokes parameters I, Q, U without anymoving parts. So, the linear polarization degree can be measured accurately, even for targets with fast polarizationand/or airmass variations. Presently, the polarization analyzer is in calibration phase, and will be installed soon at theF/12.5 Cassegrain focus of the West telescope at the "Centre Pédagogique Planète et Univers" facility (C2PU,Observatoire de la C?te d'Azur, Plateau de Calern, France).© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:轻微的太阳系天体的偏振研究,都是有用的访问物理参数,如反照率anddiameter,这是既重要又难以通过其他技术来获得。在这一领域目前的活动是limitedsince在最近观测活动采用了大多数乐器涉及光电倍增管探测器。这些传感器aresuitable用于与快速偏振变化对象的观测值,但通常是从低的量子efficiency.This遭受严重限制了可访问的目标的数目。小行星,偏振演变足够慢以allowmore敏感尽管慢检测器(基于CCD的旋光仪)。然而,极化测量精度可以与通常的“连续”旋光仪behampered。实际上,延迟器板交换时间,读出和曝光时间的附加up.Consequently,互补偏振测量之间的时间圈(一些分钟)可以是非negligiblein一些情况下,相比于极化参数的演变的时间。此外,极化精度可以通过互补exposures.We之间气团变化alsobe限于正在开发一种新的“单次” CCD基于“双沃拉斯顿”构型旋光计在文献alreadydescribed [9] [10]。它能够同时三个斯托克斯的拍摄参数I,Q,U,而不anymoving部分。所以,线性偏振度可以精确地测量,即使对于具有快速polarizationand /或气团的变化的目标。目前,检偏器是在校准阶段,并将于theF /西望远镜在“中心PédagogiquePLANETE等UNIVERS”设施12.5卡塞格林焦点(C2PU,观景塔科特海岸,高原德很快就安装Calern,法国)。©(光光学仪器工程师2012)著作权协会(SPIE)。仅供个人使用的摘要下载。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号