<?xml version="1.0" encoding="UTF-8"?>
<rss version="2.0" xmlns:media="http://search.yahoo.com/mrss/" xmlns:atom="http://www.w3.org/2005/Atom" xmlns:itunes="http://www.itunes.com/dtds/podcast-1.0.dtd">
    <channel>
        <itunes:owner>
            <itunes:name>Københavns Universitets Videoportal</itunes:name>
            <itunes:email>web@adm.ku.dk</itunes:email>
        </itunes:owner>
        <title>Københavns Universitets Videoportal</title>
        <link>https://ku.23video.com</link>
        <description></description>
        <language>da-dk</language>
        <generator>Visualplatform</generator>
        <docs>http://blogs.law.harvard.edu/tech/rss</docs>
        <itunes:author>Københavns Universitets Videoportal</itunes:author>
        <itunes:type>episodic</itunes:type>
        <itunes:explicit>no</itunes:explicit>
        <itunes:image href="https://ku.23video.com/files/rv1.9/sitelogo.gif"/>
        <image>
            <url>https://ku.23video.com/files/rv1.9/sitelogo.gif</url>
            <title>Københavns Universitets Videoportal</title>
            <link>https://ku.23video.com</link>
        </image>
        <atom:link rel="self" href="https://ku.23video.com/rss/tag/quantum technology"/>
        <atom:link rel="next" href="https://ku.23video.com/rss/tag/quantum technology?tag=quantum+technology&amp;p=2&amp;podcast%5fp=f&amp;https="/>
        <item>
            <enclosure url="http://video.ku.dk/64968561/90342595/d5548303ccfa78bf70de9e5cb382300c/video_medium/sensing-the-signature-of-life-video.mp4?source=podcast" type="video/mp4" length="76458704"/>
            <title>Sensing the signature of life</title>
            <link>http://video.ku.dk/photo/90342595/sensing-the-signature-of-life</link>
            <description>&lt;p&gt;&lt;p&gt;Researchers from the Niels Bohr Institute (NBI) have removed a key obstacle for development of extremely sensitive monitoring devices based on quantum technology.&lt;br&gt;Monitoring the heartbeat of an unborn child and other types of delicate medical examinations show the potential of quantum sensors. Since these sensors exploit phenomena at the scale of atoms, they can be far more accurate than today’s sensors.&lt;/p&gt;&lt;p&gt;Researchers from the Niels Bohr Institute (NBI), University of Copenhagen, have managed to overcome a major obstacle for development of quantum sensors. Their results are published in the prestigious scientific journal Nature Communications.&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Video:&lt;/strong&gt; Ola Jakup Joensen, Niels Bohr Institute.&lt;/p&gt;&lt;p&gt;Read the article on the website here:&amp;nbsp;&lt;a target="_blank" rel="noopener noreferrer nofollow" href="https://nbi.ku.dk/english/news/news23/sensing-the-signature-of-life/"&gt;https://nbi.ku.dk/english/news/news23/sensing-the-signature-of-life/&lt;/a&gt;&lt;/p&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/90342595/sensing-the-signature-of-life"&gt;&lt;img src="http://video.ku.dk/64968561/90342595/d5548303ccfa78bf70de9e5cb382300c/standard/download-16-thumbnail.jpg" width="75" height=""/&gt;&lt;/a&gt;&lt;/p&gt;</description>
            <guid>http://video.ku.dk/photo/90342595</guid>
            <pubDate>Wed, 08 Nov 2023 11:03:18 GMT</pubDate>
            <media:title>Sensing the signature of life</media:title>
            <itunes:summary>Researchers from the Niels Bohr Institute (NBI) have removed a key obstacle for development of extremely sensitive monitoring devices based on quantum technology.Monitoring the heartbeat of an unborn child and other types of delicate medical examinations show the potential of quantum sensors. Since these sensors exploit phenomena at the scale of atoms, they can be far more accurate than today’s sensors.Researchers from the Niels Bohr Institute (NBI), University of Copenhagen, have managed to overcome a major obstacle for development of quantum sensors. Their results are published in the prestigious scientific journal Nature Communications.Video: Ola Jakup Joensen, Niels Bohr Institute.Read the article on the website here:https://nbi.ku.dk/english/news/news23/sensing-the-signature-of-life/</itunes:summary>
            <itunes:subtitle>Researchers from the Niels Bohr Institute (NBI) have removed a key obstacle for development of extremely sensitive monitoring devices based on quantum technology.Monitoring the heartbeat of an unborn child and other types of delicate medical...</itunes:subtitle>
            <itunes:author>Københavns Universitets Videoportal</itunes:author>
            <itunes:duration>10:24</itunes:duration>
            <media:description type="html">&lt;p&gt;&lt;p&gt;Researchers from the Niels Bohr Institute (NBI) have removed a key obstacle for development of extremely sensitive monitoring devices based on quantum technology.&lt;br&gt;Monitoring the heartbeat of an unborn child and other types of delicate medical examinations show the potential of quantum sensors. Since these sensors exploit phenomena at the scale of atoms, they can be far more accurate than today’s sensors.&lt;/p&gt;&lt;p&gt;Researchers from the Niels Bohr Institute (NBI), University of Copenhagen, have managed to overcome a major obstacle for development of quantum sensors. Their results are published in the prestigious scientific journal Nature Communications.&lt;/p&gt;&lt;p&gt;&lt;strong&gt;Video:&lt;/strong&gt; Ola Jakup Joensen, Niels Bohr Institute.&lt;/p&gt;&lt;p&gt;Read the article on the website here:&amp;nbsp;&lt;a target="_blank" rel="noopener noreferrer nofollow" href="https://nbi.ku.dk/english/news/news23/sensing-the-signature-of-life/"&gt;https://nbi.ku.dk/english/news/news23/sensing-the-signature-of-life/&lt;/a&gt;&lt;/p&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/90342595/sensing-the-signature-of-life"&gt;&lt;img src="http://video.ku.dk/64968561/90342595/d5548303ccfa78bf70de9e5cb382300c/standard/download-16-thumbnail.jpg" width="75" height=""/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
            <media:content url="https://video.ku.dk/v.ihtml/player.html?token=d5548303ccfa78bf70de9e5cb382300c&amp;source=podcast&amp;photo%5fid=90342595" width="625" height="352" type="text/html" medium="video" duration="624" isDefault="true" expression="full"/>
            <media:thumbnail url="http://video.ku.dk/64968561/90342595/d5548303ccfa78bf70de9e5cb382300c/standard/download-16-thumbnail.jpg" width="75" height=""/>
            <itunes:image href="http://video.ku.dk/64968561/90342595/d5548303ccfa78bf70de9e5cb382300c/standard/download-16-thumbnail.jpg/thumbnail.jpg"/>
            <category>eugene polzik</category>
            <category>gravitational waves</category>
            <category>quantop</category>
            <category>quantum optics</category>
            <category>quantum photonics</category>
            <category>quantum sensing</category>
            <category>quantum technology</category>
        </item>
        <item>
            <enclosure url="http://video.ku.dk/60650859/64528786/764a7aacf976406060d88021e1393890/video_medium/charles-marcus-haedres-med-hc-video.mp4?source=podcast" type="video/mp4" length="9276756"/>
            <title>Charles Marcus hædres med H.C. Ørsted Guldmedalje</title>
            <link>http://video.ku.dk/photo/64528786/charles-marcus-haedres-med-hc</link>
            <description>&lt;p&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/64528786/charles-marcus-haedres-med-hc"&gt;&lt;img src="http://video.ku.dk/60650859/64528786/764a7aacf976406060d88021e1393890/standard/download-7-thumbnail.jpg" width="600" height="338"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
            <guid>http://video.ku.dk/photo/64528786</guid>
            <pubDate>Tue, 29 Sep 2020 08:00:16 GMT</pubDate>
            <media:title>Charles Marcus hædres med H.C. Ørsted Guldmedalje</media:title>
            <itunes:summary></itunes:summary>
            <itunes:subtitle></itunes:subtitle>
            <itunes:author>Københavns Universitets Videoportal</itunes:author>
            <itunes:duration>03:03</itunes:duration>
            <media:description type="html">&lt;p&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="http://video.ku.dk/photo/64528786/charles-marcus-haedres-med-hc"&gt;&lt;img src="http://video.ku.dk/60650859/64528786/764a7aacf976406060d88021e1393890/standard/download-7-thumbnail.jpg" width="600" height="338"/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
            <media:content url="https://video.ku.dk/v.ihtml/player.html?token=764a7aacf976406060d88021e1393890&amp;source=podcast&amp;photo%5fid=64528786" width="625" height="352" type="text/html" medium="video" duration="183" isDefault="true" expression="full"/>
            <media:thumbnail url="http://video.ku.dk/60650859/64528786/764a7aacf976406060d88021e1393890/standard/download-7-thumbnail.jpg" width="600" height="338"/>
            <itunes:image href="http://video.ku.dk/60650859/64528786/764a7aacf976406060d88021e1393890/standard/download-7-thumbnail.jpg/thumbnail.jpg"/>
            <category>Charles Marcus</category>
            <category>Charlie Marcus</category>
            <category>quantum computer</category>
            <category>quantum technology</category>
            <category>science</category>
        </item>
    </channel>
</rss>
