BEGIN:VCALENDAR
VERSION:2.0
PRODID:-//TYPO3/NONSGML News system (news)//EN
BEGIN:VEVENT
UID:news-39677@phys.au.dk
DTSTAMP:20210928T104123Z
DTSTART:20180502T111500Z
DTEND:20180502T120000Z
END:VEVENT
END:VCALENDAR




<div class="news news-single">
	<div class="article" itemscope="itemscope" itemtype="http://schema.org/Article">
		
	
			<script type="text/javascript">
				const showAllContentLangToken = "Vis alt indhold ";
			</script>

			
			

			<article class="typo3-delphinus delphinus-gutters">

				<!-- News PID: 83055 - used for finding folder/page which contains the news / event -->
				<!-- News UID: 39677 - the ID of the current news / event-->

				<div class="news-event">
					<div class="news-event__header">
						<!-- Categories -->
						
							<span class="text--stamp">
<!-- categories -->
<span class="news-list-category">
	
		
	
		
	
		
	
</span>

</span>
						

						<!-- Title -->
						<h1 itemprop="headline">CQOM-Seminar - Michael Gullans: &quot;Entanglement structure of current driven quantum many-body systems&quot; </h1>
						
					</div>

					

					<div class="news-event__content">

						<!-- Events info box -->
						
								

								<div class="news-event__info theme--dark" id="event-info">
									<h2 class="screenreader-only">Oplysninger om arrangementet</h2>

									
											<!--- Same date -->
											<div class="news-event__info__item news-event__info__item--time">
												<h3 class="news-event__info__item__header text--label-header">Tidspunkt</h3>
												<div class="news-event__info__item__content">
													<span class="u-avoid-wrap">
														Onsdag  2. maj 2018,
													</span>
													<span class="u-avoid-wrap">
														&nbsp;kl. 13:15 -  14:00
													</span>
													<p class="news-event__info__item__ical-link"><a href="/aktuelt/nyhed/artikel/cqom-seminar-michael-gullans-entanglement-structure-of-current-driven-quantum-many-body-systems?tx_news_pi1%5Bformat%5D=ical&amp;type=9819&amp;cHash=c4b0a2df6740e9b7d2bcaab59a5befd1">Tilføj til kalender</a></p>
												</div>
											</div>
										

									<!-- Location detailed -->
									
											<!-- Location Simple -->
											
												<div class="news-event__info__item">
													<h3 class="news-event__info__item__header text--label-header">Sted</h3>
													<div class="news-event__info__item__content">
														<p>1520-732</p>
													</div>
												</div>
											
										

									<!-- Organizer detailed -->
									
											<!-- Organizer Simple -->
											
										

									<!-- Price -->
									

									<!-- Event link -->
									

									<!-- Registration -->
									
								</div>
							

						
							<!-- Media -->
							
								



							
						

						
							<div class="news-event__content__text">
								<span class="text--byline" id="byline">
									

									<!-- Author -->
									
										<span itemprop="author" itemscope="itemscope" itemtype="http://schema.org/Person">
											
													Af
												

											
													<a href="mailto:karin.vittrup@phys.au.dk">
														<span itemprop="name">Karin Vittrup</span>
													</a>
												
										</span>
									
								</span>

								

									<!-- Body text -->
									<h2>CQOM-Seminar</h2>
<p>&nbsp;</p>
<p><strong>Title:&nbsp;</strong>
</p>
<p>Entanglement structure of current driven quantum many-body systems.
</p>
<p>&nbsp;</p>
<p><strong>Speaker:</strong>
</p>
<p>Michael Gullans, Princeton University
</p>
<p>&nbsp;</p>
<p><strong>Abstract:</strong>
</p>
<p>When an extended system is coupled at its opposite boundaries to two reservoirs at different temperatures or chemical potentials, it cannot achieve a global thermal equilibrium and is instead driven to a set of current carrying non-equilibrium states. Motivated by developments in the understanding of thermalization in closed quantum many-body systems, we find conditions under which such current-driven systems can achieve, or violate, local thermal equilibrium by investigating their entropy, mutual information, and entanglement at long times. We focus on a specific model consisting of a two-parameter family of random unitary circuits acting locally on a chain of spin-1/2s (equivalently, qubits) that exhibits quantum chaotic behavior in most of its parameter space. The only conserved quantity is the total magnetization of the spins. We choose the model so that for all parameter values the time-averaged correlation functions agree and are close to local equilibrium. However, computing the total von Neumann entropy of the system shows that there are in fact three distinct "phases" of the driven problem, with local equilibrium only emerging in the quantum chaotic regime, while one of the other phases exhibits volume-law mutual information and entanglement. We extend these results to the three-dimensional, non-interacting Anderson model in the diffusive regime, showing that the non-equilibrium steady-state for fermions realizes the volume-law mutual information phase of the random circuit. Our results suggest a generic picture for the emergence of local equilibrium in current-driven quantum chaotic systems, as well as provide insights into methods to stabilize highly-entangled many-body states out of equilibrium.
</p>
<p>&nbsp;</p>
<p> <em>Coffee and cake will be served from 13:00 </em></p>
								
							</div>
						
					</div>

					
						<!-- Content elements -->
						
					
				</div>
			</article>

			
				
				
			

			<!-- related things -->
			
				<div class="typo3-delphinus delphinus-gutters">
					<aside class="news-related">
						

						

						

						
							<!-- related files -->
							<div class="news-related__block">
								<h2 class="news-related__title--files news-related__title">
									Relaterede filer
								</h2>
								<ul class="news-related__list ul--no-bullets list--links">
									
										<li class="news-related__list__item">
											<a href="/fileadmin/news_import/CQOM-Seminar_-_Michael_Gullans_01.ics" target="_blank" class="news-related__list__item__link">
												CQOM-Seminar_-_Michael_Gullans_01.ics
											</a>
											<span class="news-related__list__item__info">
												39 KB
											</span>
										</li>
									
								</ul>
							</div>
						
					</aside>
				</div>
			
		

	</div>
</div>
