电子接收机在天文现象红外图像记录中的应用

A. Solodovnik, P. I. Leontyev, B. Useinov, A. D. Kadyrmin, R. O. Zyryanov
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引用次数: 0

摘要

根据北哈萨克斯坦大学天体物理研究中心在天文学领域的科学工作经验的概括,对光谱近红外区所选类天体的观测结果进行了说明。在这种情况下,预期的效果是增加夜光云场和其他扩展物体图像的对比度,以及新类型流星现象的登记。该任务的执行涉及使用NKU CAR提供的接收器,包括数码相机,光学图像放大器和红外光滤光器。经过测试,配备CANONZOOMLENSEF-S 10-22镜头的佳能2000被认为是最有前途的数码相机,它具有最大的视场和良好的图像质量。该相机已成功用于夜光云和流星的光学配准。通过使用滤光片093 = RG830,实现了它在红外范围内的观测。为获得对流层云的日间图像和夜光云的图像而进行的实验取得了积极的结果。此外,利用NPM-8 KM复合物(电子亮度放大器)+ CANON 600D(数码相机)进行了云场红外图像的实验,在正在实施的任务框架内也可以认为是成功的。使用该设备解决科学问题的前景是光明的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of electronic receivers for recording infrared images of celestial phenomena at the CAR of the NKU
Based on the generalization of the scientific work experience in the area of astronomy at the Center for Astrophysical Research of the North Kazakhstan University, the statement of observations of selected class objects in the near infrared region of the spectrum is justified. The expected effect in this case is to increase the contrast of images of noctilucent clouds fields and other extended objects, as well as the registration of new types of meteor phenomena. The implementation of the task involves the use of receivers that are available at the CAR of the NKU, including digital cameras, an optical image amplifier and infrared light filters. As a result of testing the devices, the CANON 2000 model with CANONZOOMLENSEF-S 10-22 lens was recognized as the most promising digital camera, which has the largest field of view with good image quality. This camera has been successfully used for optical registration of noctilucent clouds and meteors. Its application for observations in the infrared range was achieved by using a light filter 093 = RG830. Experiments conducted to obtain daytime images of tropospheric clouds and images of noctilucent clouds have yielded positive results. In addition, experiments were carried out to obtain infrared images of cloud fields by using the NPM-8 KM complex (electronic brightness amplifier) + CANON 600D (digital camera), which can also be considered successful within the framework of the task being implemented. The prospects of using this equipment for solving scientific problems are
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