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  <title><![CDATA[School of Cybersecurity & Privacy Recruiting Seminar]]></title>
  <body><![CDATA[<p>The School of Cybersecurity &amp; Privacy is welcoming&nbsp;<strong>Benedikt B&uuml;nz</strong> for a seminar titled, <em>Improving the Privacy, Scalability, and Ecological Impact of Blockchains</em>.&nbsp;B&uuml;nz&nbsp;is a Ph.D. student at Stanford University in the applied cryptography lab with Dan Boneh. His work focuses on the science of blockchains.</p>

<p>The faculty recruiting seminar is scheduled for Feb. 8 at 12 p.m. in the 9th floor atrium of the Coda Building.</p>

<p><strong>Abstract</strong>: Blockchains are an exciting area of research that touches on many areas of Computer Science and beyond. This technology has the potential to enable a fast, cheap, and private financial system based on distributed consensus and cryptography, instead of trusted parties.&nbsp;Despite this potential, the reality still shows severe limitations of blockchains: (i) transactions can cost hundreds of dollars and take minutes to confirm, (ii) some blockchains offer little privacy, and (iii) proof-of-work consensus consumes too much energy.&nbsp;In this talk, I will discuss powerful techniques that follow a prover paradigm and can mitigate these limitations.&nbsp;The first technique, called&nbsp;Bulletproofs, is a general-purpose zero-knowledge proof system that is specifically designed to enable confidential blockchain transactions. Bulletproofs requires minimal trust assumptions and gives the shortest zero-knowledge proofs without a trusted setup. The system is widely deployed and powers tens of thousands of private blockchain transactions per day. The second technique, called inner pairing products, is a way to aggregate many zero-knowledge proofs into a single short proof. This can significantly reduce on-chain data, leading to a significant increase in transactions per second that the chain can process. The third technique is a new concept called a verifiable delay function (VDF) that is vital for permission-less and eco-friendly consensus. VDFs are already deployed in Filecoin and Chia, and are planned for Ethereum 2.0, the upcoming upgrade to Ethereum.</p>
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      <value><![CDATA[The School of Cybersecurity & Privacy is welcoming Stanford University Ph.D. student Benedikt Bünz for a seminar about improving the privacy, scalability, and ecological impact of blockchains. ]]></value>
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      <value><![CDATA[2022-02-08T12:08:00-05:00]]></value>
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      <timezone><![CDATA[America/New_York]]></timezone>
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        <value><![CDATA[Faculty/Staff]]></value>
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        <value><![CDATA[Postdoc]]></value>
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        <value><![CDATA[Graduate students]]></value>
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        <value><![CDATA[Undergraduate students]]></value>
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      <value><![CDATA[<p>Kenya Payton, Assistant to the School Chair<br />
<a href="mailto:mailto:kpayton6@gatech.edu?subject=SCP%20Recruiting%20Seminar">mailto:kpayton6@gatech.edu</a></p>
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        <url>https://scp.cc.gatech.edu/calendar_event/scp-recruiting-seminar-benedikt-bunz-improving-the-privacy-scalability-and-ecological-impact-of-blockchains/</url>
        <link_title><![CDATA[School of Cybersecurity & Privacy Recruiting Seminar]]></link_title>
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