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          <blockquote type="cite" class="">
            <div class="">Begin forwarded message:</div>
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                class=""><b class="">From: </b></span><span
                style="font-family: -webkit-system-font, Helvetica Neue,
                Helvetica, sans-serif;" class="">Vanessa Gall <<a
                  href="mailto:vanessa.gall2@kit.edu"
                  class="moz-txt-link-freetext" moz-do-not-send="true">vanessa.gall2@kit.edu</a>><br
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                class=""><b class="">Subject: </b></span><span
                style="font-family: -webkit-system-font, Helvetica Neue,
                Helvetica, sans-serif;" class=""><b class="">Invitation:
                  TKM Institute Seminar Thursday, October 28, 2 pm</b><br
                  class="">
              </span></div>
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                Helvetica, sans-serif; color:rgba(0, 0, 0, 1.0);"
                class=""><b class="">Date: </b></span><span
                style="font-family: -webkit-system-font, Helvetica Neue,
                Helvetica, sans-serif;" class="">21 October 2021,
                20:46:04 GMT+3<br class="">
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                class=""><b class="">To: </b></span><span
                style="font-family: -webkit-system-font, Helvetica Neue,
                Helvetica, sans-serif;" class="">IQMT-Alle <<a
                  href="mailto:alle@iqmt.kit.edu"
                  class="moz-txt-link-freetext" moz-do-not-send="true">alle@iqmt.kit.edu</a>>,
                "<a href="mailto:atkm@tkm.uni-karlsruhe.de"
                  class="moz-txt-link-freetext" moz-do-not-send="true">atkm@tkm.uni-karlsruhe.de</a>"
                <<a href="mailto:atkm@tkm.uni-karlsruhe.de"
                  class="moz-txt-link-freetext" moz-do-not-send="true">atkm@tkm.uni-karlsruhe.de</a>>,
                <<a href="mailto:atfp@tfp.uni-karlsruhe.de"
                  class="moz-txt-link-freetext" moz-do-not-send="true">atfp@tfp.uni-karlsruhe.de</a>><br
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                <p class="">Dear all, </p>
                <p class="">in our next TKM seminar on <b class="">Thursday,
                    October 28 at 2 pm</b> we are hosting <b class="">Michael
                    Rampp</b> from our institute, who will speak about <i
                    class="">Topologically enabled superconductivity</i>.
                  <span class="" lang="EN-US">Please see below for the
                    Zoom link and the abstract of the talk.</span></p>
                <p class=""><span class="" lang="EN-US">We have adopted
                    a hybrid model for our seminar; some of our speakers
                    will also join us online. If you fall under the 3G
                    rule, you are welcome to join the seminar in person
                    in room 10.01 in the Physics building. Please scan
                    the QR code at the door of the seminar room with
                    your mobile to check in before entering. Depending
                    on the number of people present, everyone except for
                    the speaker will have to wear a mask. <br class="">
                  </span></p>
                <p class=""><span class="" lang="EN-US">In parallel, the
                    seminar will be held on zoom at the link given
                    below. <br class="">
                  </span></p>
                <p class=""><span class="" lang="EN-US"><br class="">
                  </span></p>
                <p class=""><span class="" lang="EN-US"></span>Best
                  regards </p>
                <p class="">Vanessa Gall<br class="">
                </p>
                <p class=""><br class="">
                </p>
                <p class=""><b class="">Zoom link</b><br class="">
                </p>
                <div class="">Jonas Karcher lädt Sie zu einem geplanten
                  Zoom-Meeting ein.</div>
                <div class=""><br class="">
                </div>
                <div class="">Thema: TKM Seminar</div>
                <div class="">Uhrzeit: 28.Okt..2021 02:00 PM Amsterdam,
                  Berlin, Rom, Stockholm, Wien</div>
                <div class=""><br class="">
                </div>
                <div class="">Zoom-Meeting beitreten</div>
                <div class=""><a class="moz-txt-link-freetext"
href="https://kit-lecture.zoom.us/j/65027219031?pwd=YjRXNXlFVzBQaHhOY0tPQzdRUXJRQT09"
                    moz-do-not-send="true">https://kit-lecture.zoom.us/j/65027219031?pwd=YjRXNXlFVzBQaHhOY0tPQzdRUXJRQT09</a></div>
                <div class=""><br class="">
                </div>
                <div class="">Meeting-ID: 650 2721 9031</div>
                <div class="">Kenncode: 066530</div>
                <div class=""><br class="">
                </div>
                 <br class="">
                <br class="">
                <p class=""><br class="">
                </p>
                <p class=""><b class="">Abstract</b> <br class="">
                </p>
                <p class="">Majorana zero modes are a much sought-after
                  consequence of one-dimensional topological
                  superconductivity. Here we show that, in turn, zero
                  modes accompanying dynamical instanton events strongly
                  enhance - in some cases even enable -
                  superconductivity. We find that the dynamics of a
                  one-dimensional topological triplet superconductor is
                  governed by a theta-term in the action. For isotropic
                  triplets, this term enables algebraic charge-2e
                  superconductivity, which is destroyed by fluctuations
                  in non-topological superconductors. For anisotropic
                  triplets, zero modes suppress quantum phase slips and
                  stabilize superconductivity over a large region of the
                  phase diagram. We present predictions of correlation
                  functions and thermodynamics for states of
                  topologically enhanced superconductivity. </p>
                <br class="">
                <pre class="moz-signature" cols="72">-- 
===
Vanessa Gall
PhD Student

Karlsruhe Institute of Technology
Theory of Condensed Matter
Wolfgang-Gaede-Strasse 1

<a class="moz-txt-link-abbreviated moz-txt-link-freetext" href="mailto:vanessa.gall2@kit.edu" moz-do-not-send="true">vanessa.gall2@kit.edu</a>
===</pre>
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