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dc.creatorZubairy, Muhammad Suhail
dc.creatorLiao, Zeyang
dc.creatorAl-amri, Mohammad D.
dc.date.accessioned2019-06-17T17:10:16Z
dc.date.available2019-06-17T17:10:16Z
dc.date.issued2015-11-10
dc.identifier.urihttps://hdl.handle.net/1969.1/177123
dc.description.abstractThe resonance fluorescence spectrum of a number of two-level atoms is driven by a gradient coherent laser field. In the weak dipole-dipole interaction region (separation less than λ/50), a very strong laser field may be applied such that the Rabi frequency is much larger than the dipole-dipole interaction energy. From the spectrum, the positions of each atom may be determined by just a few measurements. This sub-wavelength microscopy scheme is entirely based on far-field technique and it does not require point-by-point scanning, which makes the method more time-efficient. When two atoms are very close to each other (less than λ/50), the position information for each atom may still be obtained with very high accuracy provided that they are not too close to other atoms. The method may be extended to an arbitrarily large region without requiring more peak laser power and only a few measurements are required.en
dc.languageeng
dc.publisherUnited States. Patent and Trademark Office
dc.rightsPublic Domain (No copyright - United States)en
dc.rights.urihttp://rightsstatements.org/vocab/NoC-US/1.0/
dc.titleResonance fluorescence localization microscopy with sub-wavelength resolutionen
dc.typeUtility patenten
dc.format.digitalOriginreformatted digitalen
dc.description.countryUS
dc.contributor.assigneeThe Texas A&M University System
dc.contributor.assigneeKing Absulaziz City for Science and Technology
dc.identifier.patentapplicationnumber13/763129
dc.date.filed2013-02-08
dc.publisher.digitalTexas A&M University. Libraries
dc.subject.cpcprimaryG01N 21/6458
dc.subject.cpcprimaryG01N 21/6402
dc.subject.cpcprimaryG01N 21/6456


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