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    Natural Sciences

    汪诘:科学有故事(主打)

    你好,我是职业科普人汪诘。比科学故事更重要的,是科学精神。欢迎点赞、转发、分享~ 合作请发邮件至 biz@kexueshengyin.com

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    Copyright: © Copyright 汪洁 @喜马拉雅FM

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    Latest Episodes:
    太阳系新知 03(图书:太阳系简史):火星甲烷之谜 May 22, 2019
    Show notes

    全部图文,请加“科学有故事”的微信公众号,会定期推送。
    和我们联系以及参与更多活动,都请关注我们的公众号。
    本期节目请在“科学有故事”的微信公众号中,回复“好奇号”,有好奇号着陆火星的视频看!


    第四届“理性的力量”演讲会实况录音 May 21, 2019
    Show notes

    第四届“理性的力量”演讲会实况录音



    汪诘杂谈 | 蒙台梭利教学法是不是真的很有效 May 08, 2019
    Show notes

    太阳系新知 02(图书:太阳系简史):去火星上找到水 May 01, 2019
    Show notes

    全部图文,请加“科学有故事”的微信公众号,会定期推送。


    和我们联系以及参与更多活动,都请关注我们的公众号。



    太阳系新知 01(图书:太阳系简史):火星来客ALH84001 Apr 24, 2019
    Show notes

    全部图文,请加“科学有故事”的微信公众号,会定期推送。


    和我们联系以及参与更多活动,都请关注我们的公众号。



    汪诘杂谈 | 每日一万步有科学依据吗,BBC 又来毁三观了吗? Apr 15, 2019
    Show notes

    【视频】科学声音深度解读:EHT发布黑洞真实照片 Apr 10, 2019
    Show notes

    请点击【视频】按钮观看视频


    科学声音深度解读:EHT发布黑洞真实照片 Apr 10, 2019
    Show notes


    M87 室女 A 星系中心的黑洞



    【视频】(科学声音配音)EHT 官方公布的黑洞拍摄原理 Apr 10, 2019
    Show notes

    朝着黑洞落下的气体会被加热到数十亿度的高温

    causing the event horizon to appear as a silhouette

    使得事件视界看上去就像是“剪影”

    whose size and shape are predicted by Einstein’s theory.

    爱因斯坦的理论能预测这个剪影的尺寸和形状

    It is best to observe the silhouette in light with a wavelength of about one millimeter

    观测剪影的最佳波长约为1 毫米

    where the gas glows most brightly

    气体在这个波段辐射最明亮

    and light can travel unimpeded from the center of the galaxy to telescopes on earth.

    而且毫米波也可以从银河系的中心直达地球的望远镜

    Close to the black hole, the light waves appear circular like ripples in a pond

    接近黑洞时光波看上去就像是池塘里的圆形涟漪

    but by the time they reach earth they're essentially plain waves.

    但当它们抵达地球时基本上已经是平面状的了

    Imaging a black hole at this wavelength requires a telescope as big as our planet.

    为这样的黑洞成像需要口径像地球一样大的望远镜

    The EHT uses a global network of dishes to simulate a telescope of this size.

    EHT 利用世界不同地点的射电望远镜来模拟这个效果

    Each dish collects and records

    每一台射电望远镜都收集并记录

    radio waves coming from near the black hole.

    来自黑洞附近的无线电波信号

    The data are then combined to create the image of the event horizon.

    这些数据集合起来构成了事件视界的图像

    This will only work however, if the dishes are completely synchronized.

    计划要成功就需要所有的射电望远镜都在时间上同步

    To understand this,

    为了帮助你理解

    let's use the analogy of a mirror such as an optical telescope used for star gazing.

    我们用光学望远镜的镜面来作比喻

    Imagine the EHT formed from all the different arrays sites

    想象一下全球各地的望远镜组成的EHT 网络

    as one big parabolic mirror.

    是一个巨大的抛物面镜

    The mirror is curved

    镜面有一些弧度

    so that when a line of waves comes into the dish,

    当平行光进入盘面时

    they bounce off at specific angles and arrive at the focus at the same time.

    会在特定的角度反射并同时到达焦点

    When the EHT sites are synchronized,

    当EHT 的每个观测点都在时间上同步时

    their recordings can later be perfectly aligned

    它们的观测数据随后就能得到完美的修正

    in the same way that the mirror aligns the optical light.

    这与利用镜面修正收集到可见光的方法相同

    If the surface of the mirror is not stable,

    如果镜子的表面不稳定

    if it is vibrating for example,

    比如说振动

    the reflected light rays will not combine properly at the focus.

    反射光就无法完美聚焦

    For the EHT,

    对EHT 而言

    an unstable mirror surface is analogous to an unstable recording.

    不稳定的信号就如同不稳定的镜面

    To ensure stability,

    为了保证稳定性

    the EHT uses atomic clocks that would lose only one second every hundred million years.

    EHT使用了每一百万年只会误差1 秒的原子钟

    The amount of data recorded during observations is so large

    因为观测期间记录到的数据过于庞大

    that it could never be transferred over the Internet.

    所以不可能通过网络传输

    Instead, the recordings are stored on hard disks

    EHT 的数据被记录在硬盘上

    and shift back to a central facility for processing.

    这些硬盘寄回数据中心后再进行处理

    There, a super computer combines the data from all the sites,

    在那里一台超大型计算机负责汇总来自所有地点的数据

    staggering them during playback to account for the time difference between waves getting to each telescope.

    矫正数据抵消光波到达每个望远镜的时间差

    The resulting data can then be used to make images with extreme magnifying power

    得到的数据可以用来制作放大率极佳的影像

    As more dishes join the EHT and the more widely spaced they are,

    随着加入EHT 的射电望远镜数量越来越多、分布越来越广

    the sharper our image of the event horizon will be.

    事件视界的图片也将变得越清晰


    魔鬼出没的世界 05:这些是父母该教给孩子的 Apr 09, 2019
    Show notes

    4 月 10 日的大事件你知道吗!?关注我的推送哟!


    全部图文,请加“科学有故事”的微信公众号,会定期推送。


    和我们联系以及参与更多活动,都请关注我们的公众号。



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