{"id":2598,"date":"2026-05-03T18:07:06","date_gmt":"2026-05-03T18:07:06","guid":{"rendered":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/?p=2598"},"modified":"2026-05-03T18:07:08","modified_gmt":"2026-05-03T18:07:08","slug":"precise-coherent-and-robust-atom-interferometers","status":"publish","type":"post","link":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/precise-coherent-and-robust-atom-interferometers\/","title":{"rendered":"Precise, coherent, and robust atom interferometers\u00a0"},"content":{"rendered":"\n<p>Atom interferometers have been instrumental in precise measurements of fundamental constants and tests of fundamental laws of physics. But for new tests of the quantum nature of gravity <a href=\"https:\/\/paperpile.com\/c\/puQSUd\/HnrK\">(Carney et al. 2021)<\/a> and for robust quantum sensing of acceleration and rotation in the field, atom interferometers must have coherences measured in minutes instead of seconds; sizes measured in centimeters instead of meters; and must be robust against vibrations and magnetic fields instead of requiring bulky shielding and vibration isolation. Lattice-hold atom interferometers are a recent addition to the atomic physicists\u2019 toolbox to meet those challenges. We will discuss coherence limits in lattice interferometry at the one-minute scale <a href=\"https:\/\/paperpile.com\/c\/puQSUd\/su1x\">(Panda, M. Tao, et al. 2024)<\/a>, their accuracy in sensing gravity <a href=\"https:\/\/paperpile.com\/c\/puQSUd\/VWdA\">(Panda, M. J. Tao, et al. 2024)<\/a>, and their robustness to environmental effects <a href=\"https:\/\/paperpile.com\/c\/puQSUd\/TDgw\">(Panda et al. 2023)<\/a>.&nbsp;<\/p>\n\n\n\n<p><a href=\"http:\/\/paperpile.com\/b\/puQSUd\/HnrK\">Carney, Daniel, Holger M\u00fcller, and Jacob M. Taylor. 2021. \u201cUsing an Atom Interferometer to Infer Gravitational Entanglement Generation.\u201d <em>PRX Quantum<\/em> 2 (3): 030330.<\/a><\/p>\n\n\n\n<p><a href=\"http:\/\/paperpile.com\/b\/puQSUd\/su1x\">Panda, Cristian D., Matthew Tao, James Egelhoff, Miguel Ceja, Victoria Xu, and Holger M\u00fcller. 2024. \u201cCoherence Limits in Lattice Atom Interferometry at the One-Minute Scale.\u201d <em>Nature Physics<\/em> 20 (June): 1234.<\/a><\/p>\n\n\n\n<p><a href=\"http:\/\/paperpile.com\/b\/puQSUd\/VWdA\">Panda, Cristian D., Matthew J. Tao, Miguel Ceja, Justin Khoury, Guglielmo M. Tino, and Holger M\u00fcller. 2024. \u201cMeasuring Gravitational Attraction with a Lattice Atom Interferometer.\u201d <em>Nature<\/em>, June 26, 1\u20136.<\/a><\/p>\n\n\n\n<p><a href=\"http:\/\/paperpile.com\/b\/puQSUd\/TDgw\">Panda, C., Ma Tao, Miguel Ceja, Andrew Reynoso, and H. M\u00fcller. 2023. \u201cAtomic Gravimeter Robust to Environmental Effects.\u201d <em>Applied Physics Letters<\/em>, ahead of print, May 9. https:\/\/doi.org\/10.1063\/5.0163101.<\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Atom interferometers have been instrumental in precise measurements of fundamental constants and tests of fundamental laws of physics. But for new tests of the quantum nature of gravity (Carney et al. 2021) and for robust quantum sensing of acceleration and rotation in the field, atom interferometers must have coherences measured in minutes instead of seconds; [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":2533,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"jetpack_post_was_ever_published":false,"_jetpack_newsletter_access":"","_jetpack_dont_email_post_to_subs":true,"_jetpack_newsletter_tier_id":0,"_jetpack_memberships_contains_paywalled_content":false,"_jetpack_memberships_contains_paid_content":false,"footnotes":""},"categories":[52],"tags":[219],"class_list":["post-2598","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-invited-talk","tag-mueller-holger"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Precise, coherent, and robust atom interferometers\u00a0 - FOMO-2026<\/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:\/\/www.matterwaveoptics.eu\/fomo2026\/precise-coherent-and-robust-atom-interferometers\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Precise, coherent, and robust atom interferometers\u00a0 - FOMO-2026\" \/>\n<meta property=\"og:description\" content=\"Atom interferometers have been instrumental in precise measurements of fundamental constants and tests of fundamental laws of physics. But for new tests of the quantum nature of gravity (Carney et al. 2021) and for robust quantum sensing of acceleration and rotation in the field, atom interferometers must have coherences measured in minutes instead of seconds; [&hellip;]\" \/>\n<meta property=\"og:url\" content=\"https:\/\/www.matterwaveoptics.eu\/fomo2026\/precise-coherent-and-robust-atom-interferometers\/\" \/>\n<meta property=\"og:site_name\" content=\"FOMO-2026\" \/>\n<meta property=\"article:published_time\" content=\"2026-05-03T18:07:06+00:00\" \/>\n<meta property=\"article:modified_time\" content=\"2026-05-03T18:07:08+00:00\" \/>\n<meta property=\"og:image\" content=\"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/04\/HM.png\" \/>\n\t<meta property=\"og:image:width\" content=\"200\" \/>\n\t<meta property=\"og:image:height\" content=\"253\" \/>\n\t<meta property=\"og:image:type\" content=\"image\/png\" \/>\n<meta name=\"author\" content=\"wvk_3vn943\" \/>\n<meta name=\"twitter:card\" content=\"summary_large_image\" \/>\n<meta name=\"twitter:label1\" content=\"Written by\" \/>\n\t<meta name=\"twitter:data1\" content=\"wvk_3vn943\" \/>\n\t<meta name=\"twitter:label2\" content=\"Est. reading time\" \/>\n\t<meta name=\"twitter:data2\" content=\"2 minutes\" \/>\n<script type=\"application\/ld+json\" class=\"yoast-schema-graph\">{\"@context\":\"https:\\\/\\\/schema.org\",\"@graph\":[{\"@type\":\"Article\",\"@id\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/precise-coherent-and-robust-atom-interferometers\\\/#article\",\"isPartOf\":{\"@id\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/precise-coherent-and-robust-atom-interferometers\\\/\"},\"author\":{\"name\":\"wvk_3vn943\",\"@id\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/#\\\/schema\\\/person\\\/b7b2c57e8ef1e0424a14806159170c04\"},\"headline\":\"Precise, coherent, and robust atom interferometers\u00a0\",\"datePublished\":\"2026-05-03T18:07:06+00:00\",\"dateModified\":\"2026-05-03T18:07:08+00:00\",\"mainEntityOfPage\":{\"@id\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/precise-coherent-and-robust-atom-interferometers\\\/\"},\"wordCount\":241,\"publisher\":{\"@id\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/#organization\"},\"image\":{\"@id\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/precise-coherent-and-robust-atom-interferometers\\\/#primaryimage\"},\"thumbnailUrl\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/wp-content\\\/uploads\\\/2026\\\/04\\\/HM.png\",\"keywords\":[\"Mueller, Holger\"],\"articleSection\":[\"Invited Talk\"],\"inLanguage\":\"en-US\"},{\"@type\":\"WebPage\",\"@id\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/precise-coherent-and-robust-atom-interferometers\\\/\",\"url\":\"https:\\\/\\\/www.matterwaveoptics.eu\\\/fomo2026\\\/precise-coherent-and-robust-atom-interferometers\\\/\",\"name\":\"Precise, coherent, and robust atom interferometers\u00a0 - 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B\u00e9guin A.\u00a0(4), Rodzinka T.\u00a0(1),\u00a0\u00a0Dionis E.\u00a0(2), Calmels L.\u00a0(1), Beldjoudi S.\u00a0(1), Minjeong K.\u00a0(3), Curti J.\u00a0(3), Gu\u00e9ry-Odelin D.\u00a0(1), Sugny D.(2), Allard B.\u00a0(1), Gauguet A.\u00a0(1), and Kasevich M.\u00a0(3) (1)\u00a0\u00a0Laboratoire Collisions Agr\u00e9gats et R\u00e9activit\u00e9, France (2)\u00a0\u00a0ICB Institut Carnot de Bourgogne, France (3)\u00a0\u00a0Department of Physics, Stanford University, USA (4)\u00a0\u00a0LTE, Observatoire de Paris, Universit\u00e9 PSL, Sorbonne\u2026","rel":"","context":"In &quot;Invited Talk&quot;","block_context":{"text":"Invited Talk","link":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/category\/conference\/talks\/invited-talk\/"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/Ashley-Beguin-figure-1.png?resize=350%2C200&ssl=1","width":350,"height":200,"srcset":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/Ashley-Beguin-figure-1.png?resize=350%2C200&ssl=1 1x, https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/Ashley-Beguin-figure-1.png?resize=525%2C300&ssl=1 1.5x, https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/Ashley-Beguin-figure-1.png?resize=700%2C400&ssl=1 2x, https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/Ashley-Beguin-figure-1.png?resize=1050%2C600&ssl=1 3x, https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/Ashley-Beguin-figure-1.png?resize=1400%2C800&ssl=1 4x"},"classes":[]},{"id":2416,"url":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/carsten-klempt-2\/","url_meta":{"origin":2598,"position":1},"title":"Entanglement-enhanced atom interferometry","author":"wvk_3vn943","date":"March 4, 2026","format":false,"excerpt":"Interferometers based on ultracold atoms enable absolute measurements of inertial forces with unprecedented precision. However, their resolution is fundamentally limited by quantum fluctuations, and surpassing this limit requires the use of entangled atomic quantum states. I will review current approaches for achieving entanglement-enhanced sensitivities in inertially sensitive atom interferometers. Our\u2026","rel":"","context":"In &quot;Keynote Talk&quot;","block_context":{"text":"Keynote Talk","link":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/category\/conference\/talks\/keynote-talk\/"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/Carsten-Klempt.jpeg?resize=350%2C200&ssl=1","width":350,"height":200},"classes":[]},{"id":2201,"url":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/timothy-kovachy\/","url_meta":{"origin":2598,"position":2},"title":"Timothy Kovachy","author":"wvk_3vn943","date":"December 22, 2025","format":false,"excerpt":"Assistant Professor at Northwestern University. Tim Kovachy leads a\u00a0research group on atom interferometry\u00a0as an Assistant Professor in the\u00a0Department of Physics and Astronomy\u00a0and\u00a0Center for Fundamental Physics\u00a0at\u00a0Northwestern University.\u00a0 He is also a co-PI of the MAGIS collaboration, which is building the 100-meter-tall\u00a0MAGIS-100\u00a0atom interferometer at\u00a0Fermilab.\u00a0 Research interests include tests of fundamental physics using\u2026","rel":"","context":"In &quot;Programme Committee&quot;","block_context":{"text":"Programme Committee","link":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/category\/fomo2026\/committees\/programme-committee\/"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2025\/12\/Kovachy_Headshot.jpg?resize=350%2C200&ssl=1","width":350,"height":200,"srcset":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2025\/12\/Kovachy_Headshot.jpg?resize=350%2C200&ssl=1 1x, https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2025\/12\/Kovachy_Headshot.jpg?resize=525%2C300&ssl=1 1.5x"},"classes":[]},{"id":2229,"url":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/fabio-di-pumpo\/","url_meta":{"origin":2598,"position":3},"title":"Fabio\u00a0Di Pumpo","author":"wvk_3vn943","date":"February 23, 2026","format":false,"excerpt":"Research Scientist, University of Ulm Fabio Di Pumpo is a postdoctoral researcher at Ulm University. His research focuses on effective descriptions for composite quantum systems as fundamental-physics sensors derived from first principles, covering e.g. gravitational-wave and dark-matter detection with atomic interferometers.He is currently involved in the formation of the Terrestrial\u2026","rel":"","context":"In &quot;Invited Speaker&quot;","block_context":{"text":"Invited Speaker","link":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/category\/conference\/speakers\/invited-speaker\/"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/02\/Fabio-Di-Pumpo.png?resize=350%2C200&ssl=1","width":350,"height":200},"classes":[]},{"id":2225,"url":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/xi-chen\/","url_meta":{"origin":2598,"position":4},"title":"Xi Chen","author":"wvk_3vn943","date":"February 16, 2026","format":false,"excerpt":"Professor, Wuhan University, China Research field: experimental research on space cold atom interferometers","rel":"","context":"In &quot;Programme Committee&quot;","block_context":{"text":"Programme Committee","link":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/category\/fomo2026\/committees\/programme-committee\/"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/02\/XiChen.jpeg?resize=350%2C200&ssl=1","width":350,"height":200},"classes":[]},{"id":2449,"url":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/keynote-talk-by-ana-maria-rey\/","url_meta":{"origin":2598,"position":5},"title":"New frontiers in quantum simulation and sensing via cavity mediated\u00a0interactions","author":"wvk_3vn943","date":"March 4, 2026","format":false,"excerpt":"Ana Maria Rey JILA, NIST and University of Colorado, Boulder, CO 80309-0440, USA Email: arey@jilau1.colorado.edu Atoms and photons are the fundamental building blocks of our universe. Their interactions rule the behavior of our physical world but at the same time can be extremely complex, especially in the context of many-body\u2026","rel":"","context":"In &quot;Keynote Talk&quot;","block_context":{"text":"Keynote Talk","link":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/category\/conference\/talks\/keynote-talk\/"},"img":{"alt_text":"","src":"https:\/\/i0.wp.com\/www.matterwaveoptics.eu\/fomo2026\/wp-content\/uploads\/2026\/03\/image.jpg?resize=350%2C200&ssl=1","width":350,"height":200},"classes":[]}],"_links":{"self":[{"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/posts\/2598","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/comments?post=2598"}],"version-history":[{"count":1,"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/posts\/2598\/revisions"}],"predecessor-version":[{"id":2600,"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/posts\/2598\/revisions\/2600"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/media\/2533"}],"wp:attachment":[{"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/media?parent=2598"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/categories?post=2598"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.matterwaveoptics.eu\/fomo2026\/wp-json\/wp\/v2\/tags?post=2598"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}