Bulletin of the American Physical Society
2024 APS March Meeting
Monday–Friday, March 4–8, 2024; Minneapolis & Virtual
Session HH04: V: Lumina: Undergraduate Students' Optics Research in the PhilippinesVirtual Only
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Chair: Andrea Rose Franco, National Institute of Physics - UP Diliman Room: Virtual Room 04 |
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Wednesday, March 6, 2024 11:30AM - 12:00PM |
HH04.00001: Introduction to UP Physics Association (UPPA) Thoreenz Soldevilla, Andrea Rose Franco Provide an overview of what UPPA is, its objectives, and its activities. |
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Wednesday, March 6, 2024 12:00PM - 12:30PM |
HH04.00002: Semiclassical relaxation dynamics of cold bosonic atoms in three-site optical lattices using truncated Wigner approximation (TWA) David Macatangay A formalism is only as reliable as our understanding of its limitations. We show in this thesis the formalism breakdown of Truncated Wigner approximation (TWA) – one of the many semiclassical methods used in numerically studying various quantum systems involving cold atoms and in quantum optics. We apply TWA to the Bose-Hubbard Model and benchmark its results from those obtained in Exact Diagonalization (ED), a fully quantum mechanical method. Superimposing the results of TWA and ED in a plot of the occupation number per lattice site, we find that qualitatively TWA captures the relaxation dynamics of the physical system relatively well when compared with ED in the weakly interacting (WI) regime (U/J ≤ 1). In the strongly interacting (SI) regime (U/J > 1), TWA only succeeds in capturing some general behavior of the system and fails for giving exact values especially at longer times. Therefore, TWA is reliable to qualitatively describe the physics of a quantum system, but caution must be afforded when it will be used to determine a precise quantity, e.g., occupation number per lattice site at an exact point in time. |
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Wednesday, March 6, 2024 12:30PM - 1:00PM |
HH04.00003: Enhancing the Resolution of a low NA Microscope via Fourier Ptychography Christene P Necesario This talk explores how the resolution of a low numerical aperture microscope can be enhanced using off-the-shelf materials and the computational imaging technique, Fourier ptychography (FP). This technique employs a shifting illumination to illuminate various parts of the sample. The captured intensity measurements are used to reconstruct the Fourier spectrum of the high-resolution object by using a similar approach to synthetic aperture method. Moreover, the phase is recovered by using a phase retrieval algorithm. In this FP implementation, the main components of the imaging setup are a stereo microscope, a 7x7 LED array, and a mobile phone. The Embedded Pupil Recovery (EPRY) algorithm is investigated here. Experiments are conducted to demonstrate the capability of FP to increase the resolution. |
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Wednesday, March 6, 2024 1:00PM - 1:30PM |
HH04.00004: Question and Answers for all sessions/End of session Question and Answers for all sessions/End of session |
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