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[转帖文章] 科学家首度从地球上发现发光的太阳系外行星(图)

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caihong325 发表于 2009-1-15 19:48 | 显示全部楼层 |阅读模式 来自: 中国–四川–德阳 电信
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zhl91 发表于 2009-1-15 19:53 | 显示全部楼层 来自: 中国–福建–福州 电信
又是一个大发现,看来宇宙真的是个未知数啊
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tyrealgtx 发表于 2009-1-15 20:27 | 显示全部楼层 来自: 中国–上海–上海–浦东新区 电信
那个恒星居然不是太阳啊,太惊人了
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 楼主| caihong325 发表于 2009-1-15 20:30 | 显示全部楼层 来自: 中国–四川–德阳 电信
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一分半 发表于 2009-1-15 20:31 | 显示全部楼层 来自: 中国–上海–上海–浦东新区 电信
为什么太阳系外的行星都是大行星呢难道只是因为小的我们看不见
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q5968661 发表于 2009-1-15 21:57 | 显示全部楼层 来自: 中国–福建–厦门 电信
本帖最后由 q5968661 于 2009-1-15 21:58 编辑

Ground-Based Telescopes Observe Atmospheres of Exoplanets
Written by Nancy Atkinson


For the first time, astronomers have measured light emitted from extrasolar planets around sun-like stars using ground-based telescopes. The observations were obtained simultaneously and independently by two separate teams for two different planets. Incredibly, they were also able to determine properties of the exoplanets' atmospheres as well. Measuring the light emitted from a planet at different wavelengths reveals the planet's spectrum, which can be used to determine the planet's day-side temperature. In addition, this spectrum can reveal many physical processes in the planet's atmosphere, such as the presence of molecules like water, carbon monoxide and methane, and the redistribution of heat around the planet. "This first direct detection of light emitted by another planet, using existing telescopes on the ground, is a major milestone in the study of planets beyond our own Solar System," said Professor Gary Davis, Director of the United Kingdom Infrared Telescope (UKIRT). "This is a very exciting scientific discovery."


The measurements of the first planet, TrES-3b, were conducted by a team of Astronomers from the University of Leiden, using the William Herschel Telescope (WHT) on La Palma (Canary Islands, Spain) and the United Kingdom Infrared Telescope on Mauna Kea in Hawai`i. TrES-3b is in a very tight orbit around its host star, TrES-3, transiting the stellar disk once per 31 hours. For comparison, Mercury orbits the sun once every 88 days. TrES-3b is just a little larger than Jupiter, yet orbits around its parent star much closer than Mercury does, making it a "hot jupiter."

UKIRT observations caught the planet transiting in front of the star, from which the size of the planet has been worked out extremely precisely. The WHT observations also show the moment the planet moves behind the star, and allow the strength of the planet light to be measured. Astronomers have been trying to observe this effect from the ground for many years, and this is the first success.

Ernst de Mooij, leader of the research team, said, “While a few such observations have been conducted previously from space, they involved measurements at long wavelengths, where the contrast in brightness between the planet and the star is much higher. These are not only the first ground-based observations of this kind, they are also the first to be conducted in the near-infrared, at wavelengths of 2 micron for this planet, where it emits most of its radiation.”

graphic_orbit_comp.jpg
The researchers determined the temperature of TrES-3b to be a slightly over 2000 Kelvin. “Since we know how much energy it should receive by the type of its host star, this gives us insights into the thermal structure of the planet's atmosphere," added Dr. Ignas Snellen, "which is consistent with the prediction that this planet should have a so-called 'inversion layer.' It is absolutely amazing that we can now really probe the properties of such a distant world”.

An atmospheric inversion layer is a layer of air where the normal change of temperature with altitude reverses. Current theory says that there are two types of "hot jupiters," one with an inversion layer, and one without. One theory is that the presence of an inversion layer would depend on the amount of light the planet receives from its star. If the inversion layer could be confirmed, for example by measurements at other wavelengths, these observations would fit in perfectly with this theory.

A second team has made a ground-based detection of a different extrasolar planet, OGLE-TR-56b,using the Southern Observatory's Very Large Telescope. This planet is about 5,000 light-years away, located towards the center of the galaxy. The planet is quite hot; its atmosphere is more than 4,400 degrees Fahrenheit (2,400 degrees Celsius). This is one of the hottest extrasolar planets detected.

Prtransit_fig1.gif
The researchers say both landmark observations will open up a new window for studying exoplanets and their atmospheres using ground-based telescopes, and show great promise for using future extremely large telescopes which will have much higher sensitivity than the telescopes used today.

Paper for TrES-3b.
Paper for OGLE-TR-56b

Source: Joint Astronomy Center
To err is human, to forgive, divine.
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活动星图 发表于 2009-1-15 22:10 | 显示全部楼层 来自: 中国–北京–北京 联通
我还是有点不懂  我们发现系外行星  和我们有什么关系呢  而且它温度那么高,有什么价值呢?
caihong325 发表于 2009-1-15 08:30 PM
可以更了解宇宙
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zheng123 发表于 2009-1-16 08:58 | 显示全部楼层 来自: 中国–上海–上海 电信/鹏博士宽带
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搜星星 发表于 2009-1-16 10:07 | 显示全部楼层 来自: 中国–北京–北京 联通
这只是发现类似地球行星努力中的一小步,将来有更先进手段的话,如果能发现适合人类生存的其他行星,那就会极度刺激外太空飞行器的研制和移民计划,人类就真成了在宇宙间扩散的病毒。
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positron 发表于 2009-1-16 14:29 | 显示全部楼层 来自: 中国–北京–北京 鹏博士BGP
5# 一分半

当前的观测技术还难以发现其他类型的太阳系外行星。
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deepgreen 发表于 2009-1-16 19:00 | 显示全部楼层 来自: 中国–香港 城市电讯有限公司
可以更了解宇宙
活动星图 发表于 2009-1-15 22:10


更了解宇宙,也更了解自己。。。
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Sunrain99 发表于 2009-1-17 19:06 | 显示全部楼层 来自: 中国–北京–北京–大兴区 联通
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yeohw123 发表于 2009-1-18 22:54 | 显示全部楼层 来自: 马来西亚
[quote]我还是有点不懂  我们发现系外行星  和我们有什么关系呢  而且它温度那么高,有什么价值呢?

这是兴趣呀!就像对天文没兴趣的人,不明白我们为何我老爱用天望指向天空.我第一次用天望寻找到土星时,高兴的把弟弟和儿子叫来看, 弟弟说有什么好看,看书本的比这好看多了,那么费神买天望干嘛!第二次叫儿子看时, 儿子说看来看去还不是那个样.…….无语.
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一分半 发表于 2009-1-19 11:03 | 显示全部楼层 来自: 中国–上海–上海–杨浦区 电信/黄浦区电信
我还是有点不懂  我们发现系外行星  和我们有什么关系呢  而且它温度那么高,有什么价值呢?

这是兴趣呀!就像对天文没兴趣的人,不明白我们为何我老爱用天望指向天空.我第一次用天望寻找到土星时,高兴的把弟弟和儿子 ...
yeohw123 发表于 2009-1-18 22:54

呵呵,除此之外,研究系外行星也能对了解我们太阳系的形成有帮助
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