{"id":12263,"date":"2022-10-31T11:29:58","date_gmt":"2022-10-31T09:29:58","guid":{"rendered":"http:\/\/localhost:8888\/igfae-ber\/?p=12263"},"modified":"2024-12-26T10:45:45","modified_gmt":"2024-12-26T09:45:45","slug":"velo-entra-en-accion","status":"publish","type":"post","link":"https:\/\/igfae.usc.es\/igfae\/en\/velo-entra-en-accion\/","title":{"rendered":"VELO entra en acci\u00f3n"},"content":{"rendered":"<p><strong>El subdetector VELO del LHCb ha sido recientemente alineado con el haz de protones del LHC, acerc\u00e1ndose a una distancia sin precedentes, marcando un importante hito en la toma de datos del experimento<\/strong><\/p>\n<p>El pasado viernes 21 de octubre, el experimento LHCb del Gran Colisionador de Hadrones (LHC) super\u00f3 un importante hito de este tercer ciclo de operaci\u00f3n del acelerador. El localizador de v\u00e9rtices de \u00faltima generaci\u00f3n <a href=\"https:\/\/lhcb-outreach.web.cern.ch\/detector\/vertex-locator-velo\/\">VELO <em>(VErtex LOcator<\/em><\/a><em>)<\/em> fue alineado con el haz de protones del LHC, acerc\u00e1ndose como nunca antes ning\u00fan otro detector en el mundo. Este proceso, conocido como &#8220;cierre del VELO&#8221;, pone fin al <a href=\"http:\/\/localhost:8888\/igfae-ber\/gl\/instalacion-detector-velo-lhc\/\">periodo de instalaci\u00f3n y puesta en la que participaron los investigadores del IGFAE Antonio Fern\u00e1ndez Prieto, Edgar Lemos Cid y Efr\u00e9n Rodr\u00edguez Rodr\u00edguez el pasado mes de mayo<\/a> y permitir\u00e1 al experimento reconstruir las trayectorias de las colisiones de part\u00edculas en el LHCb con extrema precisi\u00f3n.<\/p>\n<p>El experimento LHCb analiza las part\u00edculas lanzadas hacia delante desde el punto de colisi\u00f3n de los dos haces del LHC. En particular, el equipo de LHCb busca un tipo de part\u00edcula llamada mes\u00f3n B, que se caracteriza por contener un quark &#8220;belleza&#8221;. Los mesones B son importantes para la investigaci\u00f3n en f\u00edsica de part\u00edculas porque sus interacciones pueden dar pistas sobre las limitaciones del Modelo Est\u00e1ndar, que actualmente gobierna toda la f\u00edsica de part\u00edculas. A principios de este a\u00f1o, utilizando datos de la versi\u00f3n anterior del detector, el LHCb anunci\u00f3 el descubrimiento de nuevos tipos de asimetr\u00eda materia-antimateria y de nuevas part\u00edculas ex\u00f3ticas. Ambos temas, y muchos m\u00e1s, se seguir\u00e1n investigando con el nuevo detector.<\/p>\n<p>Para poder comprender plenamente estas interacciones de part\u00edculas, se necesitan m\u00e1s datos. El trabajo de VELO consiste en reconstruir completamente las trayectorias de las colisiones de part\u00edculas, seleccionar las interacciones importantes en las que intervienen los mesones B y analizarlas.<\/p>\n<p>&#8220;Tiene que estar incre\u00edblemente cerca de los haces para obtener la m\u00e1xima precisi\u00f3n&#8221;, explica Paula Collins, f\u00edsica experimental del LHCb. El VELO lo consigue acercando gradualmente pares de placas al haz, tan cerca que incluso entran en el vac\u00edo del tubo del haz del LHC. El subdetector est\u00e1 compuesto por millones de p\u00edxeles, que act\u00faan como una c\u00e1mara, tomando im\u00e1genes de la interacci\u00f3n a una velocidad de 14 millones de veces por segundo.<\/p>\n<p>Las placas comienzan con una anchura de unos 3 cm, y se mueven cuidadosamente para centrarse alrededor del haz. &#8220;Cuando est\u00e1 cerrado, la apertura por la que pasan los haces del LHC es de s\u00f3lo 3,5 mm&#8221;, contin\u00faa Collins. &#8220;Esto es algo as\u00ed como el di\u00e1metro de un l\u00e1piz, y los haces del LHC de 400 megajulios tienen que pasar por este espacio tan estrecho&#8221;.<\/p>\n<p>Esta impresionante haza\u00f1a no podr\u00eda haberse logrado sin un enorme esfuerzo de equipo para dise\u00f1ar, instalar y hacer funcionar el VELO. El detector del LHCb se someti\u00f3 a una revisi\u00f3n completa para preparar el tercer ciclo del LHC, que comenz\u00f3 el 5 de julio de 2022. El VELO es s\u00f3lo uno de los nuevos subdetectores que han aumentado la precisi\u00f3n y la capacidad de toma de datos del LHCb. Otros subdetectores nuevos son el nuevo rastreador ascendente (UT) y el rastreador de fibra centelleante (SciFi), que analizan el haz a ambos lados del im\u00e1n central del LHCb.<\/p>\n<p>Desde el inicio del LHC, se han descubierto la existencia de 68 nuevos hadrones, 60 de los cuales fueron descubiertos por el experimento LHCb. La precisi\u00f3n sin precedentes alcanzada por el nuevo VELO marca una nueva y emocionante era para el experimento, con la esperanza de que se produzcan muchos m\u00e1s descubrimientos.<\/p>\n<p><iframe loading=\"lazy\" src=\"https:\/\/videos.cern.ch\/video\/CERN-VIDEO-2022-024-001\" width=\"560\" height=\"315\" frameborder=\"0\" scrolling=\"no\" allowfullscreen=\"allowfullscreen\"><\/iframe><\/p>\n<p>Imagen: miembros del equipo del VELO. A la derecha, Edgar Lemos Cid, ingeniero e investigador podoctoral del IGFAE. Cr\u00e9dito: LHCb experiment\/CERN.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>El subdetector VELO del LHCb ha sido recientemente alineado con el haz de protones del LHC, acerc\u00e1ndose a una distancia sin precedentes, marcando un importante hito en la toma de datos del experimento El pasado viernes 21 de octubre, el experimento LHCb del Gran Colisionador de Hadrones (LHC) super\u00f3 un importante hito de este tercer [&hellip;]<\/p>\n","protected":false},"author":7,"featured_media":12264,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[13,16],"class_list":["post-12263","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-news","category-scientific-news"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.4 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>VELO entra en acci\u00f3n - 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