一臺埋在南極冰層中的探測器為人們了解銀河系提供了一個前所未有的視角。研究人員們用收集到的數(shù)據(jù)制作了一張模糊而美麗的銀河系圖像,但這張圖像其實是由 “幽靈粒子” 中微子組成的。
Neutrinos, or 'ghost particles' as they're known, are made when cosmic rays that are rattling around space at near light speed, smash into other matter. Astronomers say understanding where they come from is key to understanding the dynamics that shape the Milky Way.
中微子,又稱 “幽靈粒子”,是當宇宙射線以接近光速的速度穿過太空大氣層,撞擊其它物質(zhì)時產(chǎn)生的粒子。天文學家們表示,了解中微子的來源是了解導(dǎo)致銀河系形成的動力學過程的關(guān)鍵。
But these short-lived particles are very difficult to detect, so scientists and engineers created an observatory that turned a cubic kilometre of Antarctic ice into a neutrino finder.
然而這些轉(zhuǎn)瞬即逝的粒子很難被探測到,因此科學家和工程師們創(chuàng)建了一個天文臺,將一立方公里的南極冰變成了中微子探測器。
The IceCube detector, as it's called, is made of thousands of sensors on long cables buried under the South Pole. Whenever a neutrino interacts with one of the billions of ice molecules, it captures that interaction and works out where that neutrino came from.
這個被稱作 “冰立方” 的探測器是由埋在南極下的長電纜上的數(shù)千個傳感器組成的。每當中微子與數(shù)十億個冰分子中的一個相互作用時,探測器就會捕捉到這種相互作用,并找出中微子的來源。
The detectors produced the first evidence of these 'ghost particles' in our home galaxy, which the researchers say gives them an entirely new window on what's happening in the Milky Way.
探測器首次發(fā)現(xiàn)了在我們的銀河系中存在這些 “幽靈粒子” 的證據(jù),研究人員們對此表示,這個發(fā)現(xiàn)為他們了解銀河系的奧秘打開了一扇窗。
neutrinos 中微子
particles 粒子
cosmic rays 宇宙射線
light speed 光速
matter 物質(zhì)
dynamics 動態(tài),動力
short-lived 轉(zhuǎn)瞬即逝的,短暫存在的
observatory 天文臺
molecules 分子
galaxy 星系
1. What do cosmic rays smash into to create 'ghost particles'?
2. How long do 'ghost particles' last for?
3. What is the IceCube detector made of?
4. Where have 'ghost particles' been detected so far?
1. What do cosmic rays smash into to create 'ghost particles'?
'Ghost particles' are made when cosmic rays smash into other matter.
2. How long do 'ghost particles' last for?
'Ghost particles' don't last long – the report says they are 'short-lived particles'.
3. What is the IceCube detector made of?
The IceCube detector is made of thousands of sensors on long cables.
4. Where have 'ghost particles' been detected so far?
The detectors have produced the first evidence of these 'ghost particles' in our home galaxy.