{"id":1869,"date":"2025-11-12T22:01:17","date_gmt":"2025-11-12T22:01:17","guid":{"rendered":"http:\/\/6914c311032ad184bd3d8160"},"modified":"2025-11-12T22:01:17","modified_gmt":"2025-11-12T22:01:17","slug":"la-computadora-cuantica-tolerante-a-fallos-de-ibm-llegara-antes-de-2029-y-la-clave-es-el-chip-nighthawk","status":"publish","type":"post","link":"https:\/\/blog.tecnoartesanos.com\/index.php\/2025\/11\/12\/la-computadora-cuantica-tolerante-a-fallos-de-ibm-llegara-antes-de-2029-y-la-clave-es-el-chip-nighthawk\/","title":{"rendered":"La computadora cu\u00e1ntica tolerante a fallos de IBM llegar\u00e1 antes de 2029 y la clave es el chip Nighthawk"},"content":{"rendered":"<div class=\"media_block\"><img decoding=\"async\" src=\"https:\/\/media.es.wired.com\/photos\/6914fccaab1fcb679c2c9201\/master\/pass\/IBM%20Quantum%20Nighthawk%20Wafer.jpg\" class=\"media_thumbnail\"><\/div>\n<p>Durante su Quantum Developer Conference, IBM present\u00f3 una hoja de ruta para construir una computadora cu\u00e1ntica tolerante a fallos antes de 2030. Entre sus innovaciones destaca Quantum Nighthawk, un nuevo chip cu\u00e1ntico con arquitectura renovada que la compa\u00f1\u00eda dise\u00f1\u00f3 para escalarse en los pr\u00f3ximos a\u00f1os.<\/p>\n<p>Nighthawk representa el <a href=\"https:\/\/es.wired.com\/articulos\/la-enciclopedia-wired-para-la-computacion-cuantica\">procesador cu\u00e1ntico<\/a> m\u00e1s avanzado de IBM, aunque no el m\u00e1s robusto que han creado. Integra 120 c\u00fabits enlazados, mientras que Heron, el chip que IBM utiliz\u00f3 en 2024, cuenta con 133 c\u00fabits, y Condor, lanzado en 2023, conect\u00f3 1,121 c\u00fabits. A pesar de tener menos c\u00fabits, Nighthawk permite ejecutar circuitos hasta un tercio m\u00e1s complejos, utilizando menos recursos y manteniendo la misma ventana de tiempo para investigaci\u00f3n. IBM atribuye esta eficiencia a su arquitectura.<\/p>\n<figure class=\"AssetEmbedWrapper-fkZDUs kHRAYC asset-embed\">\n<div class=\"AssetEmbedAssetContainer-eEeytc eRSvCP asset-embed__asset-container\"><span class=\"SpanWrapper-zEXFr koTknX responsive-asset AssetEmbedResponsiveAsset-cIfZLr fHIkTW asset-embed__responsive-asset\"><picture class=\"ResponsiveImagePicture-cGZhnX jwYQWO AssetEmbedResponsiveAsset-cIfZLr fHIkTW asset-embed__responsive-asset responsive-image\"><img decoding=\"async\" alt=\"Chip Quantum Nighthawk de IBM.\" loading=\"lazy\" class=\"ResponsiveImageContainer-eNxvmU cfBbTk responsive-image__image\" srcset=\"https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_120,c_limit\/IBM%20Quantum%20Nighthawk%20Chip%20Held_6.jpg 120w, https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_240,c_limit\/IBM%20Quantum%20Nighthawk%20Chip%20Held_6.jpg 240w, https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_320,c_limit\/IBM%20Quantum%20Nighthawk%20Chip%20Held_6.jpg 320w, https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_640,c_limit\/IBM%20Quantum%20Nighthawk%20Chip%20Held_6.jpg 640w, https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_960,c_limit\/IBM%20Quantum%20Nighthawk%20Chip%20Held_6.jpg 960w, https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_1280,c_limit\/IBM%20Quantum%20Nighthawk%20Chip%20Held_6.jpg 1280w, https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_1600,c_limit\/IBM%20Quantum%20Nighthawk%20Chip%20Held_6.jpg 1600w\" sizes=\"100vw\" src=\"https:\/\/media.es.wired.com\/photos\/6914fc1fab1fcb679c2c91ff\/master\/w_1600%2Cc_limit\/IBM%2520Quantum%2520Nighthawk%2520Chip%2520Held_6.jpg\"><\/picture><\/span><\/div>\n<div class=\"CaptionWrapper-jYrTxZ byeLF caption AssetEmbedCaption-fyuOdR eXMqGf asset-embed__caption standard\" data-testid=\"caption-wrapper\" readability=\"6\"><span class=\"BaseWrap-sc-gzmcOU BaseText-eqOrNE CaptionText-brNLzD deqABF imSbFE fGraOh caption__text\" readability=\"27\"><\/p>\n<p>Chip Quantum Nighthawk de IBM.<\/p>\n<p><\/span><span class=\"BaseWrap-sc-gzmcOU BaseText-eqOrNE CaptionCredit-eowWKH deqABF kpqIso gxwcqg caption__credit\">IBM<\/span><\/div>\n<\/figure>\n<p>La firma conect\u00f3 los 120 c\u00fabits de Nighthawk mediante una red cuadrada (<em>Square Lattice<\/em>), en lugar de la distribuci\u00f3n hexagonal que prob\u00f3 con Heron. Esta configuraci\u00f3n mejora la comunicaci\u00f3n entre c\u00fabits vecinos, reduce la distancia media entre ellos y disminuye el riesgo de decoherencia. En conjunto, <a data-offer-url=\"https:\/\/latam.newsroom.ibm.com\/2025-11-12-IBM-presenta-nuevos-procesadores-cuanticos,-software-y-avances-en-algoritmos-en-el-camino-hacia-la-ventaja-y-la-tolerancia-a-fallos\" class=\"external-link\" data-event-click=\"{&quot;element&quot;:&quot;ExternalLink&quot;,&quot;outgoingURL&quot;:&quot;https:\/\/latam.newsroom.ibm.com\/2025-11-12-IBM-presenta-nuevos-procesadores-cuanticos,-software-y-avances-en-algoritmos-en-el-camino-hacia-la-ventaja-y-la-tolerancia-a-fallos&quot;}\" href=\"https:\/\/latam.newsroom.ibm.com\/2025-11-12-IBM-presenta-nuevos-procesadores-cuanticos,-software-y-avances-en-algoritmos-en-el-camino-hacia-la-ventaja-y-la-tolerancia-a-fallos\" rel=\"nofollow noopener\" target=\"_blank\">el nuevo chip<\/a> incrementa la densidad de conexi\u00f3n y simplifica la compilaci\u00f3n de programas.<\/p>\n<p>\u201cAl final del d\u00eda, Nighthawk ofrece mayor capacidad para ejecutar programas que Heron. Optamos por menos c\u00fabits con mayor conectividad porque eso nos permite ejecutar m\u00e1s <a href=\"https:\/\/es.wired.com\/articulos\/hito-en-las-computadoras-cuanticas-ahora-son-tan-precisas-que-es-mas-probable-que-te-caiga-un-rayo-a-que-se-equivoquen\">puertas l\u00f3gicas<\/a>. As\u00ed es m\u00e1s f\u00e1cil alcanzar la ventaja cu\u00e1ntica\u201d, explic\u00f3 Alexandre Pfeifer, l\u00edder de IBM Quantum para Latinoam\u00e9rica, en entrevista con WIRED en Espa\u00f1ol.<\/p>\n<p>En computaci\u00f3n cu\u00e1ntica, <strong>una puerta l\u00f3gica representa la instrucci\u00f3n m\u00ednima que puede ejecutar la m\u00e1quina, siempre que haya un c\u00fabit disponible para operar.<\/strong> Esa ventana de disponibilidad suele durar menos de un segundo. Cuantas m\u00e1s puertas l\u00f3gicas pueda ejecutar el chip en ese breve lapso, mayor ser\u00e1 la complejidad del programa. IBM espera que Nighthawk alcance 7,500 puertas para finales de 2026 y 10,000 para 2027.<\/p>\n<hr>\n<div class=\"ContentCardEmbedWrapper-kFpFGN dpdjmB content-card-embed content-card-embed--stacked\" data-testid=\"ContentCardEmbedWrapper\" readability=\"23.466101694915\">\n<div class=\"ContentCardEmbedImage-iBIXcR jiOHKG content-card-embed__image\" data-testid=\"ContentCardEmbedImage\"><span class=\"SpanWrapper-zEXFr koTknX responsive-asset\"><picture class=\"ResponsiveImagePicture-cGZhnX jwYQWO responsive-image\"><img decoding=\"async\" alt=\"IBM Quantum Starling Render\" loading=\"lazy\" class=\"ResponsiveImageContainer-eNxvmU cfBbTk responsive-image__image\" srcset=\"https:\/\/media.es.wired.com\/photos\/68486c31ed5297a4508cd50b\/master\/w_120,c_limit\/IBM%20Quantum%20Starling%20Render%201.jpg 120w, https:\/\/media.es.wired.com\/photos\/68486c31ed5297a4508cd50b\/master\/w_240,c_limit\/IBM%20Quantum%20Starling%20Render%201.jpg 240w, https:\/\/media.es.wired.com\/photos\/68486c31ed5297a4508cd50b\/master\/w_320,c_limit\/IBM%20Quantum%20Starling%20Render%201.jpg 320w, https:\/\/media.es.wired.com\/photos\/68486c31ed5297a4508cd50b\/master\/w_640,c_limit\/IBM%20Quantum%20Starling%20Render%201.jpg 640w\" sizes=\"100vw\" src=\"https:\/\/media.es.wired.com\/photos\/68486c31ed5297a4508cd50b\/master\/w_775%2Cc_limit\/IBM%2520Quantum%2520Starling%2520Render%25201.jpg\"><\/picture><\/span><\/div>\n<div class=\"ContentCardEmbedInfo-bSBhwc IbulD\" readability=\"25.271186440678\">\n<div class=\"BaseWrap-sc-gzmcOU BaseText-eqOrNE ContentCardEmbedHed-kuAbUL deqABF jkWAvF fPZrfS content-card-embed__hed\" data-testid=\"ContentCardEmbedHed\"><a class=\"BaseWrap-sc-gzmcOU BaseText-eqOrNE BaseLink-eTpkqh ContentCardEmbedHedLink-kqBDz deqABF jkWAvF dsRLul hMqJdP content-card-embed__hed-link\" href=\"https:\/\/es.wired.com\/articulos\/ibm-prepara-quantum-starling-la-primera-computadora-cuantica-util-a-gran-escala\" data-testid=\"ContentCardEmbedHedLink\">IBM prepara Quantum Starling, la primera computadora cu\u00e1ntica \u00fatil a gran escala<\/a><\/div>\n<p>Quantum Starling podr\u00e1 ejecutar 100 millones de operaciones utilizando 200 c\u00fabits l\u00f3gicos, lo que permitir\u00e1 reducir costos en campos como el desarrollo de medicamentos y la investigaci\u00f3n de nuevos materiales.<\/p>\n<\/div>\n<\/div>\n<hr>\n<h2>Por qu\u00e9 lo de hoy son chips peque\u00f1os con menos c\u00fabits<\/h2>\n<p>La escalabilidad sigue siendo uno de los principales desaf\u00edos del campo. La mayor\u00eda de las compa\u00f1\u00edas han concluido que construir computadoras gigantes con miles de c\u00fabits resulta insostenible, ya que pierden su utilidad pr\u00e1ctica. IBM comparte esa visi\u00f3n y planea conectar varios chips Nighthawk entre s\u00ed para aumentar la potencia sin fabricar <em>hardware<\/em> inoperable.<\/p>\n<p>\u201cEl enfoque de IBM es modular. Vamos a conectar varios chips en lugar de hacerlos m\u00e1s grandes. Ya llegamos a uno de 1,121 c\u00fabits, pero decidimos que resulta m\u00e1s pr\u00e1ctico fabricar chips m\u00e1s peque\u00f1os y de mejor calidad\u201d, afirm\u00f3 Pfeifer.<\/p>\n<p>Adem\u00e1s, la computadora cu\u00e1ntica de hoy enfrenta un problema persistente: su vulnerabilidad a fallos, debido a la fragilidad inherente de los c\u00fabits. Por ejemplo, un c\u00fabit puede perder coherencia a mitad de un c\u00e1lculo o arrojar errores de lectura.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Durante su Quantum Developer Conference, IBM present\u00f3 una hoja de ruta para construir una computadora cu\u00e1ntica tolerante a fallos antes de 2030. Entre sus innovaciones destaca Quantum Nighthawk, un nuevo chip cu\u00e1ntico con arquitectura renovada que la compa\u00f1\u00eda dise\u00f1\u00f3 para escalarse en los pr\u00f3ximos a\u00f1os. Nighthawk representa el procesador cu\u00e1ntico m\u00e1s avanzado de IBM, aunque [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":1870,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[1],"tags":[],"class_list":["post-1869","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-technology"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v24.5 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>La computadora cu\u00e1ntica tolerante a fallos de IBM llegar\u00e1 antes de 2029 y la clave es el chip Nighthawk - TecnoArtesanos Tech Blog<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/blog.tecnoartesanos.com\/index.php\/2025\/11\/12\/la-computadora-cuantica-tolerante-a-fallos-de-ibm-llegara-antes-de-2029-y-la-clave-es-el-chip-nighthawk\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"La computadora cu\u00e1ntica tolerante a fallos de IBM llegar\u00e1 antes de 2029 y la clave es el chip Nighthawk - TecnoArtesanos Tech Blog\" \/>\n<meta property=\"og:description\" content=\"Durante su Quantum Developer Conference, IBM present\u00f3 una hoja de ruta para construir una computadora cu\u00e1ntica tolerante a fallos antes de 2030. 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Entre sus innovaciones destaca Quantum Nighthawk, un nuevo chip cu\u00e1ntico con arquitectura renovada que la compa\u00f1\u00eda dise\u00f1\u00f3 para escalarse en los pr\u00f3ximos a\u00f1os. 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