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<oembed><version>1.0</version><provider_name>Department of Computer Science</provider_name><provider_url>https://www.cs.jhu.edu</provider_url><title>Noah Stephens-Davidowitz, Simons Institute &#x2013; &#x201C;Foundations of Lattice-Based Cryptography&#x201D; - Department of Computer Science</title><type>rich</type><width>600</width><height>338</height><html>&lt;blockquote class="wp-embedded-content"&gt;&lt;a href="https://www.cs.jhu.edu/event/noah-stephens-davidowitz-simons-institute-foundations-of-lattice-based-cryptography/"&gt;Noah Stephens-Davidowitz, Simons Institute &#x2013; &#x201C;Foundations of Lattice-Based Cryptography&#x201D;&lt;/a&gt;&lt;/blockquote&gt;
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&lt;/script&gt;&lt;iframe sandbox="allow-scripts" security="restricted" src="https://www.cs.jhu.edu/event/noah-stephens-davidowitz-simons-institute-foundations-of-lattice-based-cryptography/embed/" width="600" height="338" title="&#x201C;Noah Stephens-Davidowitz, Simons Institute &#x2013; &#x201C;Foundations of Lattice-Based Cryptography&#x201D;&#x201D; &#x2014; Department of Computer Science" frameborder="0" marginwidth="0" marginheight="0" scrolling="no" class="wp-embedded-content"&gt;&lt;/iframe&gt;</html><description>LocationZoomAbstractThere has been a recent revolution in cryptography due to the introduction of lattice-based constructions. These are cryptographic schemes whose security relies on the presumed hardness of certain computational problems over ubiquitous (and beautiful) geometric objects called lattices. Their many applications (e.g., fully homomorphic encryption) and security against adversaries with quantum computers has created some&hellip;</description></oembed>
