Phase preservation of orbital angular momentum of light in multiple scattering environment

Recent advancements in wavefront shaping techniques have facilitated the study of complex structured light’s propagation with orbital angular momentum (OAM) within various media. The introduction of spiral phase modulation to the Laguerre–Gaussian (LG) beam during its paraxial propagation is facilit...

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Veröffentlicht in:Light, science & applications science & applications, 2024-08, Vol.13 (1), p.214-13, Article 214
Hauptverfasser: Meglinski, Igor, Lopushenko, Ivan, Sdobnov, Anton, Bykov, Alexander
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Sprache:eng
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Zusammenfassung:Recent advancements in wavefront shaping techniques have facilitated the study of complex structured light’s propagation with orbital angular momentum (OAM) within various media. The introduction of spiral phase modulation to the Laguerre–Gaussian (LG) beam during its paraxial propagation is facilitated by the negative gradient of the medium’s refractive index change over time, leading to a notable increase in the rate of phase twist, effectively observed as phase retardation of the OAM. This approach attains remarkable sensitivity to even the slightest variations in the medium’s refractive index ( ∼ 10 − 6 ). The phase memory of OAM is revealed as the ability of twisted light to preserve the initial helical phase even propagating through the turbid tissue-like multiple scattering medium. The results confirm fascinating opportunities for exploiting OAM light in biomedical applications, e.g. such as non-invasive trans-cutaneous glucose diagnosis and optical communication through biological tissues and other optically dense media. Structured light carrying OAM exhibits high sensitivity to refractive index variations and phase memory in scattering media, with strong potential for non-invasive glucose diagnosis and optical communication.
ISSN:2047-7538
2095-5545
2047-7538
DOI:10.1038/s41377-024-01562-7