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Hexameric poly-fluoroberyllophosphate Na_(4)Be_(2)PO_(4)F_(5) with moderate birefringence and deep-ultraviolet transmission as a potential zero-order-waveplate crystal
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作者 Yuanyu Yang Yao Guo +3 位作者 Yi-Gang Chen Xiwei Hu Xia Zhang Xian-Ming Zhang 《Inorganic Chemistry Frontiers》 2022年第21期5469-5477,共9页
Deep-ultraviolet(deep-UV λ:<200 nm)zero-order waveplate crystal materials are currently scarce but much-needed.The exploration of promising deep-UV zero-order waveplate materials is extremely difficult because of ... Deep-ultraviolet(deep-UV λ:<200 nm)zero-order waveplate crystal materials are currently scarce but much-needed.The exploration of promising deep-UV zero-order waveplate materials is extremely difficult because of strict building unit and structural framework requirements.Herein,the first polyfluoroberyllophosphate crystal,Na_(4)Be_(2)PO_(4)F_(5),with a zero-dimensional(0D)structure was rationally designed and synthesized through facile hydrothermal technology.Na_(4)Be_(2)PO_(4)F_(5) features a novel[Be_(4)P_(2)O_(8)F_(10)]hexameric isolated group possessing three kinds of building units:BeO_(2)F_(2),BeOF_(3),and PO_(4).For comparison,the newly-synthesized mono-fluoroberyllophosphate crystal KBe[PO_(3)(OH)]F features a_(∞)^(1)[BePO_(3)(OH)F]chain composed of BeO_(3)F and PO_(3)(OH)building units.Na_(4)Be_(2)PO_(4)F_(5),with deep-UV transmission below 190 nm,exhibits more suitable birefringence of 0.003 at 1064 nm to act as a promising deep-UV zero-order waveplate material compared to the deep-UV crystal KBe[PO_(3)(OH)]F,which shows remarkably-enlarged birefringence of 0.025;the birefringence difference is mainly attributed to the different polarizabilities and stacking densities of the building units.Further,a systematic investigation into alkali beryllophosphates demonstrates that BeO_(4) and PO_(4) tetrahedra show a unique interconnection mode,and the 0D structure of Na_(4)Be_(2)PO_(4)F_(5),caused by the cut-off effect of F atoms,is the optimal choice for deep-UV zero-order waveplate materials. 展开更多
关键词 building units hydrothermal technology hexameric polyfluoroberyllophosphate zero order waveplate alkali beryllophosphates deep ultraviolet transmission facile hydrothermal technologyna be po f polyfluoroberyllophosphate crystalna be po f
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Dielectric quarter-waveplate metasurfaces for longitudinally tunable manipulation of high-order Poincarébeams
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作者 TENG MA KAIXIN ZHAO +7 位作者 CHUANFU CHENG MANNA GU QINGRUI DONG HAOYAN ZHOU SONG GAO DUK-YONG CHOI CHUNXIANG LIU CHEN CHENG 《Photonics Research》 2025年第8期2257-2269,共13页
The dynamic tunability of vector beams(VBs)with metasurfaces plays an important role in the discovery of exotic optical phenomena and development of classic and quantum applications.Using the tunability with longitudi... The dynamic tunability of vector beams(VBs)with metasurfaces plays an important role in the discovery of exotic optical phenomena and development of classic and quantum applications.Using the tunability with longitudinal propagation distance and multifunctional capability of the quarter-waveplate(QWP)meta-atoms,dielectric metasurfaces were designed to generate high-order Poincaré(HOP)beams with tunable elliptical polarization states at arbitrary latitudes.The metasurface contained two interleaved sub-metasurfaces of QWP meta-atoms,each configured with helical,hyperbolic,and primary and secondary axicon-phase profiles to generate a vortex,beam focus,and beam deflection,respectively.Importantly,the axicons were suitably designed by combining the propagation and geometric phases to introduce differences in the z-component wavevectors,and the amplitudes of the co-and cross-polarized vortices were tuned by the longitudinal distance.The method broke through the limitation of previously generating only the linear polarization states on the equator of the HOP sphere,and it also circumvented the traditional tunability using the troublesome waveplate-polarizer combination.This study is of great significance for the miniaturization and integration of optical systems for applications such as optical communications,micromanipulation,and high-precision detection. 展开更多
关键词 high order Poincar beams quantum applications dynamic tunability vector beams dielectric quarter waveplate metasurfaces exotic optical phenomena discovery exotic optical phenomena metasurfaces
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Multi-depth switching by triple wavefront modulation of quarter-waveplate geometric phase lenses for vergence-accommodation-matching extended reality
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作者 Jung-Yeop Shin Jae-Won Lee +6 位作者 Hafiz Saad Khaliq Erkhembaatar Dashdavaa Munkh-Uchral Erdenebat Min-Seok Kim Jin-Hyeok Seo Young-Min Cho Hak-Rin Kim 《Light: Science & Applications》 2025年第11期3566-3580,共15页
We present a novel approach to resolving the vergence–accommodation conflict(VAC)in extended reality(XR)optics by introducing a quarter-waveplate(QWP)geometric phase lens(GPL)capable of triple wavefront modulation—f... We present a novel approach to resolving the vergence–accommodation conflict(VAC)in extended reality(XR)optics by introducing a quarter-waveplate(QWP)geometric phase lens(GPL)capable of triple wavefront modulation—focusing,defocusing,and non-modulating at infinity.This polarization-driven behavior is interpreted using contour trajectories on the Poincarésphere and compared against conventional half-waveplate(HWP)GPLs.Leveraging this property,we propose a bi-stacked QWP GPL module that enables nine distinct varifocal states through polarization-controlled input selection and output filtering.In contrast,HWP-based modules under equivalent stacking conditions are limited to four focal states.The QWP GPL module supports a compact varifocal system spanning a continuous depth range from 24.27 cm to infinity,with a 0.3-diopter interval aligned with the human visual comfort zone.Importantly,the number of representable focal depths scales as 3^(n)for n stacked layers,offering a(1.5)^(n)-fold improvement over the 2^(n)scaling of HWP systems.This enables finer depth transitions using fewer lens units while retaining both compactness and optical modularity,establishing a depth-switchable imaging platform that enhances visual comfort and depth fidelity in next-generation XR display systems. 展开更多
关键词 multi depth switching nine distinct va triple wavefront modulation focusingdefocusingand contour trajectories extended reality phase lens gpl capable triple wavefront modulation quarter waveplate geometric phase lenses
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Broadband tunable liquid crystal terahertz waveplates driven with porous graphene electrodes 被引量:20
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作者 Lei Wang Xiao-Wen Lin +10 位作者 Wei Hu Guang-Hao Shao Peng Chen Lan-Ju Liang Biao-Bing Jin Pei-Heng Wu Hao Qian Yi-Nong Lu Xiao Liang Zhi-Gang Zheng Yan-Qing Lu 《Light: Science & Applications》 SCIE EI CAS CSCD 2015年第1期477-482,共6页
Versatile devices,especially tunable ones,for terahertz imaging,sensing and high-speed communication,are in high demand.Liquid crystal based components are perfect candidates in the optical range;however,they encounte... Versatile devices,especially tunable ones,for terahertz imaging,sensing and high-speed communication,are in high demand.Liquid crystal based components are perfect candidates in the optical range;however,they encounter significant challenges in the terahertz band,particularly the lack of highly transparent electrodes and the drawbacks induced by a thick cell.Here,a strategy to overcome all these challenges is proposed:Few-layer porous graphene is employed as an electrode with a transmittance of more than 98%.A subwavelength metal wire grid is utilized as an integrated high-efficiency electrode and polarizer.The homogeneous alignment of a high-birefringence liquid crystal is implemented on both frail electrodes via a non-contact photo-alignment technique.A tunable terahertz waveplate is thus obtained.Its polarization evolution is directly demonstrated.Furthermore,quarter-wave plates that are electrically controllable over the entire testing range are achieved by stacking two cells.The proposed solution may pave a simple and bright road toward the development of various liquid crystal terahertz apparatuses. 展开更多
关键词 liquid crystal porous graphene terahertz waveplate
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Graphene metasurface-based switchable terahertz half-/quarter-wave plate with a broad bandwidth
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作者 罗小青 罗娟 +1 位作者 胡放荣 李光元 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第2期479-484,共6页
Metasurfaces incorporating graphene hold great promise for the active manipulation of terahertz waves. However,it remains challenging to design a broadband graphene-based terahertz metasurface with switchable function... Metasurfaces incorporating graphene hold great promise for the active manipulation of terahertz waves. However,it remains challenging to design a broadband graphene-based terahertz metasurface with switchable functionality of half-wave plate(HWP) and quarter-wave plate(QWP). Here, we propose a graphene–metal hybrid metasurface for achieving broadband switchable HWP/QWP in the terahertz regime. Simulation results show that, by varying the Fermi energy of graphene from 0 eV to 1 eV, the function of the reflective metasurface can be switched from an HWP with polarization conversion ratio exceeding 97% over a wide band ranging from 0.7 THz to 1.3 THz, to a QWP with ellipticity above 0.92over 0.78 THz–1.33 THz. The sharing bandwidth reaches up to 0.52 THz and the relative bandwidth is as high as 50%.We expect this broadband and dynamically switchable terahertz HWP/QWP will find applications in terahertz sensing,imaging, and telecommunications. 展开更多
关键词 terahertz metasurface waveplate GRAPHENE RECONFIGURABLE
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Wavelength-selective multifunctional light control with inverse designed dielectric metasurface
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作者 MEIJIU ZHENG ZHENYU WANG +4 位作者 BIN REN FEI XIE SERGEI MAKAROV MINGZHAO SONG SHUAI WANG 《Photonics Research》 2026年第1期69-76,共8页
The metasurface has emerged as a powerful platform for achieving versatile and precise light control due to its extraordinary optical properties.However,multifunctional metasurface-based devices,usually employing shar... The metasurface has emerged as a powerful platform for achieving versatile and precise light control due to its extraordinary optical properties.However,multifunctional metasurface-based devices,usually employing shared apertures or cascading with different metasurfaces,suffer from inherent interference and complex configurations.Here,we propose a single-layer transmissive multifunctional metasurface performing distinct manipulations of light at specific wavelengths,free from inter-wavelength interference,benefiting from the strong dispersion of the silicon dielectric nanostructure.The metasurface is optimized using an adjoint-based inverse design with a gradient descent method.The simulated and experimental results confirm the successful integration of three functionalities within a single metasurface:beam stopper,linear polarizer,and half waveplate.The proposed multifunctional metasurface features an ultra-compact design with a simple configuration,which has the potential for applications in various fields,including photonic data transmission,hyperspectral imaging,and advanced optical sensing systems. 展开更多
关键词 inverse designed dielectric metasurface beam stopper half waveplate shared apertures wavelength selective linear polarizer multifunctional light control light control
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以LiB_(3)O_(5)为模板设计深紫外零级波片材料
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作者 张志远 徐蝶 +3 位作者 Abudukadi Tudi 杨志华 韩树娟 潘世烈 《Science China Materials》 SCIE EI CAS CSCD 2024年第3期914-920,共7页
以著名的LiB_(3)O_(5)为模板,通过增强其结构中B_(2)O_(5)的夹角使双折射更小,在封闭体系中通过高温溶液法获得了两种新的用于制造零级波片的双折射晶体Li_(2)MLaB_(18)O_(30)(M=Rb,Cs).有趣的是,相邻的B_(2)O_(5)接近垂直排列,使得它... 以著名的LiB_(3)O_(5)为模板,通过增强其结构中B_(2)O_(5)的夹角使双折射更小,在封闭体系中通过高温溶液法获得了两种新的用于制造零级波片的双折射晶体Li_(2)MLaB_(18)O_(30)(M=Rb,Cs).有趣的是,相邻的B_(2)O_(5)接近垂直排列,使得它们表现出比商用石英晶体(Δn~0.0092在可见光区域)小得多的双折射率(分别为0.0032@532 nm和0.0027@532 nm).此外,Li_(2)MLaB_(18)O_(30)(M=Rb,Cs)晶体的紫外截止边均低于200 nm,表明它们可用作深紫外区域的零级波片材料. 展开更多
关键词 tiny birefringence zero-order waveplate deep-ultraviolet region angle of B_(2)O_(5)
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