[{"main_file_link":[{"url":"https://arxiv.org/abs/1311.1805","open_access":"1"}],"citation":{"mla":"Lee, Jongmin, et al. “Many-Atom-Cavity QED System with Homogeneous Atom-Cavity Coupling.” <i>Optics Letters</i>, vol. 39, no. 13, OSA, 2014, pp. 4005–08, doi:<a href=\"https://doi.org/10.1364/OL.39.004005\">10.1364/OL.39.004005</a>.","chicago":"Lee, Jongmin, Geert Vrijsen, Igor Teper, Onur Hosten, and Mark Kasevich. “Many-Atom-Cavity QED System with Homogeneous Atom-Cavity Coupling.” <i>Optics Letters</i>. OSA, 2014. <a href=\"https://doi.org/10.1364/OL.39.004005\">https://doi.org/10.1364/OL.39.004005</a>.","apa":"Lee, J., Vrijsen, G., Teper, I., Hosten, O., &#38; Kasevich, M. (2014). Many-atom-cavity QED system with homogeneous atom-cavity coupling. <i>Optics Letters</i>. OSA. <a href=\"https://doi.org/10.1364/OL.39.004005\">https://doi.org/10.1364/OL.39.004005</a>","ista":"Lee J, Vrijsen G, Teper I, Hosten O, Kasevich M. 2014. Many-atom-cavity QED system with homogeneous atom-cavity coupling. Optics Letters. 39(13), 4005–4008.","ama":"Lee J, Vrijsen G, Teper I, Hosten O, Kasevich M. Many-atom-cavity QED system with homogeneous atom-cavity coupling. <i>Optics Letters</i>. 2014;39(13):4005-4008. doi:<a href=\"https://doi.org/10.1364/OL.39.004005\">10.1364/OL.39.004005</a>","short":"J. Lee, G. Vrijsen, I. Teper, O. Hosten, M. Kasevich, Optics Letters 39 (2014) 4005–4008.","ieee":"J. Lee, G. Vrijsen, I. Teper, O. Hosten, and M. Kasevich, “Many-atom-cavity QED system with homogeneous atom-cavity coupling,” <i>Optics Letters</i>, vol. 39, no. 13. OSA, pp. 4005–4008, 2014."},"quality_controlled":0,"issue":"13","doi":"10.1364/OL.39.004005","status":"public","day":"01","publication":"Optics Letters","year":"2014","date_created":"2018-12-11T11:47:21Z","title":"Many-atom-cavity QED system with homogeneous atom-cavity coupling","month":"07","date_published":"2014-07-01T00:00:00Z","publisher":"OSA","date_updated":"2021-01-12T08:05:09Z","page":"4005 - 4008","oa":1,"abstract":[{"text":"We demonstrate a many-atom-cavity system with a high-finesse dual-wavelength standing wave cavity in which all participating rubidium atoms are nearly identically coupled to a 780-nm cavity mode. This homogeneous coupling is enforced by a one-dimensional optical lattice formed by the field of a 1560-nm cavity mode.","lang":"eng"}],"publication_status":"published","publist_id":"7216","_id":"589","extern":1,"intvolume":"        39","author":[{"full_name":"Lee, Jongmin","first_name":"Jongmin","last_name":"Lee"},{"full_name":"Vrijsen, Geert","last_name":"Vrijsen","first_name":"Geert"},{"first_name":"Igor","last_name":"Teper","full_name":"Teper, Igor"},{"id":"4C02D85E-F248-11E8-B48F-1D18A9856A87","orcid":"0000-0002-2031-204X","full_name":"Onur Hosten","first_name":"Onur","last_name":"Hosten"},{"full_name":"Kasevich, Mark A","last_name":"Kasevich","first_name":"Mark"}],"volume":39,"type":"journal_article"}]
