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The Coherent Optics and Laser Interferometry Group, directed by Professor David D. Nolte, applies the sensitivity of laser interferometry to a broad range of topics that include solid state physics, plasmonics in gold films, graphene, semiconductor physics, biointerferometry in biological physics, protein surface chemistry and holographic imaging of living biological tissues. In all thes areas, the picometer sensitivity of laser interferometry provides unprecidented sensitivity to study the optical properties of materials. For example, the BioCD (Biological Compact Disk) relies on diffraction of lasers from antibodies on spinning discs. For instance, the physics of partial coherence, combined with the propagation of light through biological tissues, has lead to the development of Biodynamic Imaging which measures intracellular motions in living tissue.
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Dawith Lim,Zhen Hua,Zhe Li, Ali Ajrouch, Ahmad Karkash, Shadia Jalal,Michael Childress,John Turek,David Nolte
Optical Coherence Tomography and Coherence Domain Optical Methods in Biomedicine XXVIII (2024)
Zhen Hua,Zhe Li, Dawith Lim, Ali Ajrouch, Ahmad Karkash,Shadia Jalal,Michael Childress,John Turek,David Nolte
Scientific Reportsno. 1 (2024): 1-10
REPORTS ON PROGRESS IN PHYSICSno. 3 (2024)
arxiv(2023)
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Optics & Photonics Newsno. 3 (2023): 48-48
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IEEE Journal of Selected Topics in Quantum Electronicsno. 4 (2023): 1-4
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IOP conference seriesno. 1 (2023): 012085-012085
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OPTICAL COHERENCE TOMOGRAPHY AND COHERENCE DOMAIN OPTICAL METHODS IN BIOMEDICINE XXVII (2023)
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