天文研究与技术-国家天文台台刊
天文研究與技術-國傢天文檯檯刊
천문연구여기술-국가천문태태간
ASTRONOMICAL RESEARCH & TECHNOLOGY-PUBLICATIONS OF NATIONAL ASTRONOMICAL OBSERVATORIES OF CHINA
2006年
1期
35-47
,共13页
屈中权%许骏%毛伟军%张宵宇%胥成林%孙明国%金春兰%王帅
屈中權%許駿%毛偉軍%張宵宇%胥成林%孫明國%金春蘭%王帥
굴중권%허준%모위군%장소우%서성림%손명국%금춘란%왕수
太阳活动%望远镜%谱线
太暘活動%望遠鏡%譜線
태양활동%망원경%보선
Solar activities%telescopes%spectral lines
提出了一种新型太阳光谱望远镜的建议,这种望远镜能够同时记录太阳日面观测区域的两维空间的色散(三维光谱),即一系列同步狭窄带通的光谱图像.借助该望远镜我们可以得到高时间分辨率的光谱图(10ms),进而能够做细致的光谱分析.该望远镜由一组子望远镜组成,每个子镜负责记录观测区域的一个事先设计好的透过带,所有透过带覆盖了所研究谱线的整个光谱波段,可以用来诊断不透明的低层大气物质流的三维速度场、重构太阳活动区(即太阳耀斑区)的三维结构.此外,若每个子镜都加载上偏振仪时,则能够得到精确的矢量磁场,这种矢量磁场能够作为第二代视频磁场测量仪.此望远镜由一组紧密排列的子镜组成,文章分别给出了两种不同排列子镜的方式.描述了用来观测的每个子镜的透过带的样品光学表,并且提出了不同探测器的同时成像技术.最后,我们把该望远镜和ATST(Advanced Technology Solar Telescope)进行了比较.
提齣瞭一種新型太暘光譜望遠鏡的建議,這種望遠鏡能夠同時記錄太暘日麵觀測區域的兩維空間的色散(三維光譜),即一繫列同步狹窄帶通的光譜圖像.藉助該望遠鏡我們可以得到高時間分辨率的光譜圖(10ms),進而能夠做細緻的光譜分析.該望遠鏡由一組子望遠鏡組成,每箇子鏡負責記錄觀測區域的一箇事先設計好的透過帶,所有透過帶覆蓋瞭所研究譜線的整箇光譜波段,可以用來診斷不透明的低層大氣物質流的三維速度場、重構太暘活動區(即太暘耀斑區)的三維結構.此外,若每箇子鏡都加載上偏振儀時,則能夠得到精確的矢量磁場,這種矢量磁場能夠作為第二代視頻磁場測量儀.此望遠鏡由一組緊密排列的子鏡組成,文章分彆給齣瞭兩種不同排列子鏡的方式.描述瞭用來觀測的每箇子鏡的透過帶的樣品光學錶,併且提齣瞭不同探測器的同時成像技術.最後,我們把該望遠鏡和ATST(Advanced Technology Solar Telescope)進行瞭比較.
제출료일충신형태양광보망원경적건의,저충망원경능구동시기록태양일면관측구역적량유공간적색산(삼유광보),즉일계렬동보협착대통적광보도상.차조해망원경아문가이득도고시간분변솔적광보도(10ms),진이능구주세치적광보분석.해망원경유일조자망원경조성,매개자경부책기록관측구역적일개사선설계호적투과대,소유투과대복개료소연구보선적정개광보파단,가이용래진단불투명적저층대기물질류적삼유속도장、중구태양활동구(즉태양요반구)적삼유결구.차외,약매개자경도가재상편진의시,칙능구득도정학적시량자장,저충시량자장능구작위제이대시빈자장측량의.차망원경유일조긴밀배렬적자경조성,문장분별급출료량충불동배열자경적방식.묘술료용래관측적매개자경적투과대적양품광학표,병차제출료불동탐측기적동시성상기술.최후,아문파해망원경화ATST(Advanced Technology Solar Telescope)진행료비교.
The concept of a new type of the solar optical telescope is proposed that can record simultaneously the two dimensional dispersions (3D spectrum) of observed regions on the solar disk,i.e.a series of synchronous narrow-bandpass spectral images.It can allow us to do detailed spectral analysis while being able to own a super high temporal resolution,say,tens of milliseconds.Such a telescope can be formed with an array of sub-telescopes in each of which an image of the observed area is recorded at the different designed bandpass within one interested line,and the collection of these bandpasses spreads and covers the whole spectral band of an interesting spectral line.It can be suitable to diagnose the three-component velocity fields of mass flows,and obtain the ability to reconstruct three dimensional(3D) structure of solar active region (say,solar flaring region) in the opaque lower atmosphere. And further, with the polarimeter mounted to each of its sub-telescope, the accurate measurement of the vector magnetic field can be realized, and it can be regarded as the second generation video magnetograph.One such telescope consists of many compact sub-telescopes. Two kinds of configurations of compact arrays mounting the sub-telescopes are outlined respectively. A sample optical scheme realizing the narrow band-pass (up to 30m) observation for each sub-telescope is described and the crucial technology keeping the cadence of simultaneous imaging is presented in the text.Generally,the aperture and number of the sub-telescopes depend on the property of measurement.For instance, the flare observation needs more sub-telescopes with smaller aperture than that of the vector magnetic field measurement.The advantage of constructing such a telescope lies in that each sub-telescope can be constructed as an etalon.Finally comparison with ATST(Advanced Technology Solar Telescope) is stated.