Academic literature on the topic 'Nanophotonic multi-functional materials'

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Journal articles on the topic "Nanophotonic multi-functional materials"

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Shim, Hyungki, Zeyu Kuang, Zin Lin, and Owen D. Miller. "Fundamental limits to multi-functional and tunable nanophotonic response." Nanophotonics, January 4, 2024. http://dx.doi.org/10.1515/nanoph-2023-0630.

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Abstract Tunable and multi-functional nanophotonic devices are used for applications from beam steering to sensing. Yet little is understood about fundamental limits to their functionality. The difficulty lies with the fact that it is a single structure that must exhibit optimal response over multiple scenarios. In this article, we present a general theoretical framework for understanding and computing fundamental limits to multi-functional nanophotonic response. Building from rapid recent advances in bounds to light–matter interactions, we show that after rewriting the design problems in term
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Wang, Xielin, Ding Zhang, Zhichao Li, and Gururaj V. Naik. "A Metasurface Using Molybdenum Disulfide as a Super‐Mossian Dielectric Material." Advanced Optical Materials, November 13, 2024. http://dx.doi.org/10.1002/adom.202402208.

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AbstractHigh‐index dielectrics or Super‐Mossian materials are essential for emerging nanophotonic applications. Several transition metal dichalcogenides (TMDCs) are promising as super‐Mossian dielectric materials. Molybdenum disulfide (MoS2) is an outstanding super‐Mossian TMDC exceeding Moss' rule prediction of its refractive index by nearly 40%. This high refractive index enables compact, multi‐functional, and high‐performance metadevices. Here, a MoS2 metasurface is experimentally demonstrated using resonators with volumes of nearly a tenth of those made of silicon. To harness their phase c
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Wu, Pei-Yuan, Yun-Chorng Chang, and Chen-Bin Huang. "Broadband plasmonic half-subtractor and digital demultiplexer in pure parallel connections." Nanophotonics, July 14, 2022. http://dx.doi.org/10.1515/nanoph-2022-0267.

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Abstract Nanophotonic arithmetic circuits requiring cascaded Boolean operations are difficult to implement due to loss and footprint issues. In this work, we experimentally demonstrate plasmonic half-subtractor and demultiplexer circuits based on transmission-lines. Empowered by the unique polarization selectivity in the surface plasmon modal behaviors, both circuits are realized without cascading. The operations of the half-subtractor and demultiplexer can be performed using a single laser beam with three predefined linear polarizations. All of our experiments are performed using a 56 fs lase
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Li, Peiyao, Zhi Yan, Lei Wang, Yinsheng Xu, Ping Lu, and Jingyu Zhang. "Advanced Transparent Glass‐Ceramics via Laser Anisotropic Nanocrystallization." Laser & Photonics Reviews, April 30, 2024. http://dx.doi.org/10.1002/lpor.202301403.

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AbstractTransparent glass‐ceramics, merging the attributes of both glass and ceramics, have diverse applications in ballistic protection, armor materials, dentistry, light‐emitting diode, and optical domains. A limitation of conventional methods for glass‐ceramic fabrication is their inadequacy in precisely controlling the morphology of crystallization, consequently constraining their prospective advancements in diverse areas. Here, a method that facilitates precise control over the formation and growth of polarization‐dependent nonperiodic anisotropic nanocrystals, with a short axis ranging f
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Márquez, Andrés, Chi Li, Augusto Beléndez, Stefan A. Maier, and Haoran Ren. "Information multiplexing from optical holography to multi-channel metaholography." Nanophotonics, November 27, 2023. http://dx.doi.org/10.1515/nanoph-2023-0605.

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Abstract Holography offers a vital platform for optical information storage and processing, which has a profound impact on many photonic applications, including 3D displays, LiDAR, optical encryption, and artificial intelligence. In this review, we provide a comprehensive overview of optical holography, moving from volume holography based on optically thick holograms to digital holography using ultrathin metasurface holograms in nanophotonics. We review the use of volume holograms for holographic multiplexing through the linear momentum selectivity and other approaches and highlight the emergi
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Dissertations / Theses on the topic "Nanophotonic multi-functional materials"

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Kanaujia, Pawan Kumar. "Fabrication and studies of low-dimensional hybrid semiconductor photonic structures." Thesis, 2018. http://localhost:8080/iit/handle/2074/7700.

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