用中微子探测黑洞(转自Scientific American)
科学吧
全部回复
仅看楼主
level 4
yuzeximj 楼主
五千个探测阵列布置在南极的冰下,科学家们把这个计划称作 “冰块实验”。这些探测器的目的不是来寻找光,而是探测那些来自深空的中微子。
中微子是一些没有电荷,没有质量的基本粒子。他几乎不和电磁力和引力发生作用。其这样的性质可以让他没有阻碍的穿过深空,和地球。但当其与极地冰正面相撞时(这极难发生),会激发出其他粒子,而这些粒子可以释放光子。大多数的中微子来自与地球,比如核反应堆。而我们要探测的是来自太空的那一部分。
已经有科学家探测到我们无法制造高能中微子,他们既有可能来自宇宙那些最暴力的区域———超大质量黑洞,超星星爆炸。
下面这个 视频可以详细的解释这一切
文章是楼主 一个字一个字翻译的
2015年09月27日 10点09分 1
level 4
yuzeximj 楼主
原文:How to See the Universe Through Neutrino Eyes
The IceCube experiment at the South Pole waits for neutrinos to unlock secrets of deep space
By Clara Moskowitz | Sep 15, 2015
Buried a mile into the South Pole ice, more than 5,000 sensors spread over a square kilometer lie in wait. Part of the IceCube experiment, they are a telescope of sorts that looks not for light, but for neutrinos coming in from the far-off cosmos.
Neutrinos are fundamental particles with no electric charge and almost negligible mass. Because of these properties, they are immune to the electromagnetic force and feel gravity only very minutely, and so they rarely interact with other matter. That property allows them to fly through space—even through Earth and our bodies—without impediment. But very rarely, one will hit an atom of polar ice head-on and release a spray of other particles, which in turn emit photons that light up IceCube’s sensors. If one struck an atom in your body (which should happen at least once in a lifetime to about a quarter of all people, one physicist estimates), you wouldn’t notice, but a similar reaction would occur.
SEE ALSO:
Health: Researchers Seek Cancer Clues from Pet Dogs |
Mind: Animals Have More Social Smarts Than You May Think |
Sustainability: How Modern Agriculture Can Save the Gorillas of Virunga |
The Sciences: The Mystery of the Cat's Inner Eyelid
Most neutrino experiments study neutrinos born on Earth, such as in nuclear reactors. But IceCube is targeting a much scarcer quarry—high-energy neutrinos from distant space. Already IceCube has detected neutrinos with higher energies than any that have been created on Earth, and scientists hope the data will help unlock the secrets of some of the universe’s most violent places, such as supermassive black holes and the remnants of supernova explosions, where they likely originated.
IceCube’s principal investigator, Francis Halzen, details the experiment’s findings so far in a feature article in Scientific American’s October 2015 issue, “Neutrinos at the Ends of the Earth.” He also explains IceCube’s goals, and the power of neutrino astronomy, in the video below, produced by the IceCube project and the Institute of Corpuscular Physics (IFIC) in Valencia, Spain.
2015年09月27日 10点09分 2
level 4
yuzeximj 楼主



视频来自:优酷
2015年09月27日 10点09分 3
level 4
yuzeximj 楼主
顶
2015年09月27日 12点09分 5
level 4
yuzeximj 楼主
d
2015年09月28日 00点09分 6
level 11
不是有霍金辐射吗
2015年09月28日 04点09分 7
霍金辐射太弱了,根本不可能观测到。如果观测到了,霍金就拿诺贝尔奖了
2015年09月30日 09点09分
1