Computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detection

Acoustophotonic imaging uses ultrasound-modulated scattered light to improve the quality of optical imaging in diffusive media. Experiments that use photorefractive-crystal-based detection have shown that there is a large dc shift in the acoustically modulated or ac optical signal, which could be ut...

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主要な著者: Blonigen, F, Nieva, A, Dimarzio, C, Manneville, S, Sui, L, Maguluri, G, Murray, T, Roy, R
フォーマット: Journal article
言語:English
出版事項: Optical Society of America 2005
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author Blonigen, F
Nieva, A
Dimarzio, C
Manneville, S
Sui, L
Maguluri, G
Murray, T
Roy, R
author_facet Blonigen, F
Nieva, A
Dimarzio, C
Manneville, S
Sui, L
Maguluri, G
Murray, T
Roy, R
author_sort Blonigen, F
collection OXFORD
description Acoustophotonic imaging uses ultrasound-modulated scattered light to improve the quality of optical imaging in diffusive media. Experiments that use photorefractive-crystal-based detection have shown that there is a large dc shift in the acoustically modulated or ac optical signal, which could be utilized to further improve optical imaging resolution. We report that photon paths in a diffusive medium were generated by a Monte Carlo simulation, and the optical phase shifts of the various photons induced by the presence of a realistic focused ultrasound beam were calculated. Quantities that characterize the ac and dc signal components were evaluated by use of the calculated phase shifts. It was confirmed that the dc component dominates owing to coherent summation of the contributions from all the photons.
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spelling oxford-uuid:133e1a14-19ea-4a4e-87a1-3b7c6361fefc2022-03-26T10:12:48ZComputations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detectionJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:133e1a14-19ea-4a4e-87a1-3b7c6361fefcEnglishSymplectic Elements at OxfordOptical Society of America2005Blonigen, FNieva, ADimarzio, CManneville, SSui, LMaguluri, GMurray, TRoy, RAcoustophotonic imaging uses ultrasound-modulated scattered light to improve the quality of optical imaging in diffusive media. Experiments that use photorefractive-crystal-based detection have shown that there is a large dc shift in the acoustically modulated or ac optical signal, which could be utilized to further improve optical imaging resolution. We report that photon paths in a diffusive medium were generated by a Monte Carlo simulation, and the optical phase shifts of the various photons induced by the presence of a realistic focused ultrasound beam were calculated. Quantities that characterize the ac and dc signal components were evaluated by use of the calculated phase shifts. It was confirmed that the dc component dominates owing to coherent summation of the contributions from all the photons.
spellingShingle Blonigen, F
Nieva, A
Dimarzio, C
Manneville, S
Sui, L
Maguluri, G
Murray, T
Roy, R
Computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detection
title Computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detection
title_full Computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detection
title_fullStr Computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detection
title_full_unstemmed Computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detection
title_short Computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive-based detection
title_sort computations of the acoustically induced phase shifts of optical paths in acoustophotonic imaging with photorefractive based detection
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