<?xml version="1.0" encoding="UTF-8"?>
<reference anchor="I-D.kaws-qirg-advent" target="https://datatracker.ietf.org/doc/html/draft-kaws-qirg-advent-03">
   <front>
      <title>Advertising Entanglement Capabilities in Quantum Networks</title>
      <author initials="K." surname="Kompella" fullname="Kireeti Kompella">
         <organization>Juniper Networks, Inc.</organization>
      </author>
      <author initials="M." surname="Aelmans" fullname="Melchior Aelmans">
         <organization>Juniper Networks, Inc.</organization>
      </author>
      <author initials="S." surname="Wehner" fullname="Stephanie Wehner">
         <organization>QuTech</organization>
      </author>
      <author initials="C." surname="Sirbu" fullname="Cristian Sirbu">
         <organization>Redbit Networks</organization>
      </author>
      <author initials="A." surname="Dahlberg" fullname="Axel Dahlberg">
         <organization>QuTech</organization>
      </author>
      <date month="March" day="27" year="2019" />
      <abstract>
	 <t>   This document describes the use of link-state routing protocols on
   classical links in Quantum Networks.  It contains proposals for
   additions to the IS-IS and OSPF protocols in order for them to
   transport relevant information for a Quantum Network, specifically,
   for the creation and manipulation of entangled pairs.  The document
   will describe some of the necessary attributes and some suggestions
   of how this information may be used.

   No Schrodinger&#x27;s cats were harmed in the creation of this document.


	 </t>
      </abstract>
   </front>
   <seriesInfo name="Internet-Draft" value="draft-kaws-qirg-advent-03" />
   
</reference>
