{"version":"1.0","provider_name":"RESEARCH GROUP \/ PHYSICS OF QUANTUM AND MATERIALS","provider_url":"https:\/\/research.kent.ac.uk\/pqm","author_name":"Gunnar Moeller","author_url":"https:\/\/research.kent.ac.uk\/pqm\/author\/gm400\/","title":"Seminar by Felix Werner, ENS Paris - RESEARCH GROUP \/ PHYSICS OF QUANTUM AND MATERIALS - Research at Kent","type":"rich","width":600,"height":338,"html":"<blockquote class=\"wp-embedded-content\" data-secret=\"O6yob0zZ2o\"><a href=\"https:\/\/research.kent.ac.uk\/pqm\/2022\/11\/02\/seminar-by-felix-werner-ens-paris\/\">Seminar by Felix Werner, ENS Paris<\/a><\/blockquote><iframe sandbox=\"allow-scripts\" security=\"restricted\" src=\"https:\/\/research.kent.ac.uk\/pqm\/2022\/11\/02\/seminar-by-felix-werner-ens-paris\/embed\/#?secret=O6yob0zZ2o\" width=\"600\" height=\"338\" title=\"&#8220;Seminar by Felix Werner, ENS Paris&#8221; &#8212; RESEARCH GROUP \/ PHYSICS OF QUANTUM AND MATERIALS\" data-secret=\"O6yob0zZ2o\" frameborder=\"0\" marginwidth=\"0\" marginheight=\"0\" scrolling=\"no\" class=\"wp-embedded-content\"><\/iframe><script>\n\/*! This file is auto-generated *\/\n!function(d,l){\"use strict\";l.querySelector&&d.addEventListener&&\"undefined\"!=typeof URL&&(d.wp=d.wp||{},d.wp.receiveEmbedMessage||(d.wp.receiveEmbedMessage=function(e){var t=e.data;if((t||t.secret||t.message||t.value)&&!\/[^a-zA-Z0-9]\/.test(t.secret)){for(var s,r,n,a=l.querySelectorAll('iframe[data-secret=\"'+t.secret+'\"]'),o=l.querySelectorAll('blockquote[data-secret=\"'+t.secret+'\"]'),c=new RegExp(\"^https?:$\",\"i\"),i=0;i<o.length;i++)o[i].style.display=\"none\";for(i=0;i<a.length;i++)s=a[i],e.source===s.contentWindow&&(s.removeAttribute(\"style\"),\"height\"===t.message?(1e3<(r=parseInt(t.value,10))?r=1e3:~~r<200&&(r=200),s.height=r):\"link\"===t.message&&(r=new URL(s.getAttribute(\"src\")),n=new URL(t.value),c.test(n.protocol))&&n.host===r.host&&l.activeElement===s&&(d.top.location.href=t.value))}},d.addEventListener(\"message\",d.wp.receiveEmbedMessage,!1),l.addEventListener(\"DOMContentLoaded\",function(){for(var e,t,s=l.querySelectorAll(\"iframe.wp-embedded-content\"),r=0;r<s.length;r++)(t=(e=s[r]).getAttribute(\"data-secret\"))||(t=Math.random().toString(36).substring(2,12),e.src+=\"#?secret=\"+t,e.setAttribute(\"data-secret\",t)),e.contentWindow.postMessage({message:\"ready\",secret:t},\"*\")},!1)))}(window,document);\n\/\/# sourceURL=https:\/\/research.kent.ac.uk\/pqm\/wp-includes\/js\/wp-embed.min.js\n<\/script>\n","thumbnail_url":"https:\/\/research.kent.ac.uk\/pqm\/wp-content\/uploads\/sites\/2221\/2022\/11\/WERNER_Felix.jpg","thumbnail_width":599,"thumbnail_height":765,"description":"Talk Abstract: In contrast to conventional QMC methods, expansions of intensive quantities in series of connected Feynman diagrams can be formulated directly in the thermodynamic limit. Over the last decade, diagrammatic Monte Carlo algorithms made it possible to reach large expansion orders and to obtain state-of-the-art results for various models of interacting fermions in 2 [&hellip;]"}