Transit-time-resonant interferometry in a strontium thermal beam gyroscope

dc.contributor.advisorBiedermann, Grant W
dc.contributor.authorKraft, Luke Aaron
dc.contributor.committeeMemberAbraham, Eric
dc.contributor.committeeMemberSantos, Mike
dc.contributor.committeeMemberPrzebinda, Tomasz
dc.date.accessioned2026-06-22T22:05:31Z
dc.date.embargoExpiration2026-12-22 00:00:00
dc.date.issued2026
dc.date.proquestAvailable01/01/2026
dc.date.updated2026-06-22T22:05:31Z
dc.description.abstractWe demonstrate an atom interferometer gyroscope (AIG) using a strontium thermal beam. Our compact AIG consists of a stream of strontium atoms interacting with three laser pulses that split and recombine the matterwave flux to create a Mach-Zhender (MZ) interferometer sensitive to rotation. This system requires no cooling, no state preparation, and requires no microwave components. We also demonstrate a novel phase modulation technique for detecting the AIG response, which is especially useful for interferometers with a short time-of-flight. We will discuss our approach, latest results, and future plans. This thesis is organized in the following manner: Chapter 1 provides context to this work followed by relevant properties of ⁸⁸Sr. An overview of atom interferometry gyroscopes is covered in Chapter 2 followed by an explanation of phase modulation and its use in signal extraction in Chapter 3. Chapter 4 covers numerical investigation of the system parameter space. Next, the experimental apparatus is discussed in Chapter 5 followed by the results of our efforts in Chapter 6. Finally, Chapter 7 provides a summary of the most notable conclusions in this work.
dc.identifier.orcid0009-0000-0008-9541
dc.identifier.urihttps://shareok.org//handle/11244/342702
dc.language.isoen
dc.publisherUniversity of Oklahoma – Graduate College
dc.subjectAtomic physics
dc.subjectQuantum physics
dc.subjectPhysics
dc.subjectGyroscope
dc.subjectInterferometer
dc.subjectPhase Modulation
dc.subjectStrontium
dc.subjectThermal Beam
dc.thesis.degreeD.Phil.
dc.titleTransit-time-resonant interferometry in a strontium thermal beam gyroscope
ou.groupPhysics and Astronomy: Arts & Sciences

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