Fast Scrambling in a Long-range XX/YY/ZZ Measurement-only Quantum Circuit

dc.contributor.advisorMullen, Kieran K.M.
dc.contributor.authorYokoyama, Hinata
dc.contributor.committeeMemberAbraham, Eric E.A.
dc.contributor.committeeMemberPrzebinda, Tomasz T.P.
dc.date.accessioned2025-07-25T19:02:30Z
dc.date.embargoExpiration
dc.date.issued2025
dc.date.proquestAvailable01/01/2025
dc.date.updated2025-07-25T19:02:30Z
dc.description.abstractThis study explores fast scrambling and measurement-induced phase transitions in long-range XX/YY/ZZ measurement-only quantum circuits. Using the stabilizer formalism and Gottesman-Knill theorem, we analyze entanglement growth, quantum information scrambling, and phase transitions in a one-dimensional spin-1/2 chain. The results reveal a transition from area-law to volume-law entanglement at a critical probability Pyy=0.185 for alpha=2.00, validated by finite-size scaling analysis. The initial state dependence and the role of long-range measurements are also examined. These findings enhance our understanding of non-equilibrium quantum dynamics and provide insights into their connection with fast scrambling and black hole analogies.
dc.identifier.urihttps://shareok.org//handle/11244/341561
dc.language.isoen
dc.publisherUniversity of Oklahoma – Graduate College
dc.subjectQuantum physics
dc.subjectEntanglement phase transition
dc.subjectMeasurement-Only quatum circuit
dc.subjectQuantum information scrambling
dc.thesis.degreeM.S.
dc.titleFast Scrambling in a Long-range XX/YY/ZZ Measurement-only Quantum Circuit
ou.groupPhysics and Astronomy: Arts & Sciences

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