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Summary of optical turbulence measurements taken at the Starfire Optical Range

机译:在星形光学范围内截取的光学湍流测量概述

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Since 1987, we have measured the transverse coherence length (Fried's r$-o$/ parameter) and the isoplanatic angle, $theta$-o$/, using optical instruments at the Starfire Optical Range (SOR). Through the end of December 1994, we have accumulated 160, 653 r$-o$/ measurements and 185,488 $theta$-o$/ measurements. The transverse coherence length, r$- o$/, was determined by measuring the short exposure modulation transfer function of the atmosphere using a 35.5 cm Celestron transfer observing bright stars. The isoplanatic angle was obtained using a stellar scintillation technique on bright stars with a 10 cm Meade telescope. Prior to 1992, a 20 cm Celestron telescope with an apodized aperture was used. Means and frequency distributions of r$-o$/ and $theta$-o$/ have been determined for the period 1987 through December 1994, for each individual year and for each month using measurement from all years. In addition, for the period November 1993 to December 1994, we used Albuquerque National Weather Service rawinsonde wind data and a model of the C$- n$/$+2$/ profile to estimate the Greenwood frequency f$-G$/. These estimates generally compare well with measured Greenwood frequency data obtained from the high speed wavefront sensor in the 1.5 m adaptive optics system. The summaries presented are a first attempt to characterize the optical turbulence at the SOR and may be used to plan experiments during months of statistically low atmospheric turbulence and Greenwood frequency.
机译:自1987年以来,我们已测得的横向相干长度的(Fried的R $ $ -o /参数)和晕角,$ $ THETA -o $ /,使用光学仪器在星火光学范围(SOR)。通过1994年12月底,我们已经积累了160,653 R $ -o $ /测量和185488 $ THETA $ -o $ /测量。横向相干长度,r $ - Ø$ /,通过使用35.5厘米转印特朗观察明亮的星测量大气的短曝光调制传递函数来确定。使用上明亮的恒星一个恒星闪烁技术为10cm米德望远镜得到晕角。在1992年以前,使用20cm的望远镜特朗与变迹孔。手段和r $ -o $ / $和$ THETA -o $ /的频率分布已经通过1994年12月确定1987年期间,为每个单独的一年,每个月可从所有测量年。此外,1993年11月至1994年12月,我们用阿尔伯克基国家气象局探空风数据和C $的典范 - N $ / $ + 2 $ /轮廓估计格林伍德频率f $ -G $ /。这些估计通常与从在1.5微米自适应光学系统的高速波前传感器获得的测量格林伍德频率的数据进行比较好。给出的摘要是在SOR表征光学湍流的第一尝试,并在统计学低大气湍流和格林伍德频率的个月可用于计划的实验。

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