第1期:平行宇宙—多重世界
日期:2019-11-15 16:27

(单词翻译:单击)

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One of the biggest secrets of physics is that we still don't fundamentally understand
物理学最大的秘密之一是,我们仍然无法从根本上理解
what happens when the smallest things interact with big things - that is, when quantum mechanics meets our everyday world.
当最小的物体与较大的物体相互作用时会发生什么,即当量子力学遇上我们的日常生活世界时会发生什么8blgD~]4bw8ZM#
You've probably heard of the 'Schrodinger's Cat' experiment where a particle (in this case a cat)
大家应该都听过‘薛定谔的猫’,在这个实验中,一个粒子(在这个例子中是一只猫)
is in a superposition of two states (both dead and alive) at once, until it interacts with the outside world -
同时处于两种状态(死的和活的)的叠加状态,直到它与外部世界相互作用—
normally a photon of light that we send in to see what's going on (but it could also just be a random particle that has nothing to do with us).
通常情况下,我们会向内发射光子来观察发生了什么(但它也可以是一个随机且与我们无关的粒子)EGj;WrHyUo5;k2uD^(
Upon interaction with the outside world, the cat is observed as being either dead, or alive, but not both.
一旦与外部世界接触,我们观察的这只猫不是死的就是活的,但不可能存在既死又活的猫8Cz6M0I~xQ!QTZ2-4ZqH
The problem is, physics can't explain how the cat, or particle, goes from being in a combination of two states at once
问题是,物理学无法解释这只猫或粒子如何从同时处于两种状态的组合
to being in 'just one', or 'just the other'; nor do we know how the 'decision' is made.
变成了‘只有一种’或‘只有另一种’的状态;我们也不知道‘决定’是如何做出的(f(F7U&iSZa+^TTX
This isn't just a problem with cats, either - it plagues every single quantum mechanics experiment, famous or otherwise,
这不仅仅是猫的问题——它困扰着每一个量子力学实验,无论著名与否,
from the double slit experiment and quantum teleportation to the Stern-Gerlach experiment and tests of the Bell inequalities.
比如双缝实验、量子隐形传态、斯特恩-革拉赫实验和贝尔不等式的验证A-P3%R~O@QPEzD@%MC
In every case, we can predict how likely it is for a particle to be in one state or another,
在每种情况下,我们都可以预测一个粒子处于一种或另一种状态的可能性有多大,

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平行宇宙—多重世界.jpg

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but have no clue how it actually ends up that way.
但没有线索表明其结果到底如何(E!*;|l1#_#-w5A
That's where the many-worlds picture of quantum mechanics comes in -
因此就有了量子力学的多重世界图景—
basically, 'many-worlds' proposes the idea that the quantum system doesn't actually decide -
‘多重世界’提出了这样一个观点,即量子系统实际上并没有决定
rather, that at every junction where large everyday stuff interacts with a quantum system,
而是在每一个大型日常物体与量子系统相互作用的连接点上,
the timeline of history splits and both possibilities happen on different, alternate branches.
历史的时间轴分裂了,并且这两种可能性都会发生在不同且交替的分支上xJJ7.r6-N-[=m
You know, a choose-your-own-adventure where every possible story happens.
要知道,在一个‘惊险岔路口’中,每种故事都有可能发生|,WuReGr7Eg;cm4m
In this scenario, we'd think that only one possibility happened because we'd be stuck on one of the branches,
在这种情况中,我们会认为只有一种可能性发生,因为我们都被困在了一个分支上,
in a version of ourselves that only sees one possibility happen.
在我们自己的版本中,我们只看到了一种可能性的发生3G2NcK*]62iXl~*z-3w
In some ways, this sounds pretty fishy - I mean, it's hard to test the reality of a universe
在某种程度上,这听起来很可疑—我的意思是,很难在不让我们进行测试
that hides its true nature from us by not allowing us to test or observe its true nature.
或观察其真实本质的情况下,测试宇宙隐藏的真实本质y+vpA0&3fQQ(0ws
But anyway, in the many-worlds picture of quantum mechanics, 'branch-points' are predicted to happen all the time, everywhere.
但无论如何,在量子力学的多重世界图景中,‘分支点’预计随时随地都会发生_%c_1|]HxL@1eC%&
Pretty much any time subatomic particles interact with each other, or with anything else, anywhere in the universe,
几乎在任何时候,亚原子粒子彼此或和任何其他物质在宇宙任何地方相互作用,
there are multiple possible outcomes. Which means a LOT of branching of history.
都有多种可能的结果GlX%_TiG)t2+。这意味着历史有很多分支)YU,Z(V=Suz@z
There may even be infinitely many branches. So is the Many Worlds hypothesis true?
甚至可能有无穷多个分支G1.ZNB#9Ci@5Ign4Q;4。所以多重世界假说是真的吗?
We don't know - it hasn't yet been tested experimentally. There's a bit of mathematics that supports it,
我们不知道—该假说还没有经过实验测试i0@K|Zz&%jCeN(E&1TBn。有一些数学模型支持这种假说,
and there are also a number of mathematical models that don't require such an extravagantly big & complex picture of the universe.
也有一些数学模型不需要如此庞大而复杂的宇宙图景.Qv-)=Qy0FQS
But luckily, physics is science, not speculation, and eventually, someone, maybe even you,
但是幸运的是,物理学是科学而不是推测,最终会有人将进行一个实验,
will perform an experiment that helps us uncover the truth.
帮助我们发现真相,这个人甚至可能是你4)ECh6xKif

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重点单词
  • mechanicsn. 力学,机械学,(技术的,操作的)过程,手法
  • junctionn. 联接,会合处,交叉点
  • decisionn. 决定,决策
  • observev. 观察,遵守,注意到 v. 评论,庆祝
  • complexadj. 复杂的,复合的,合成的 n. 复合体,综合体,
  • alternateadj. 交替的,轮流的,间隔的 v. 交替,轮流
  • combinationn. 结合,联合,联合体
  • performv. 执行,运转,举行,表演
  • universen. 宇宙,万物,世界
  • eventuallyadv. 终于,最后