• Chinese Optics Letters
  • Vol. 7, Issue 8, 08667 (2009)
I. Abdulhalim
Author Affiliations
  • Department of Electrooptic Engineering, Ben Gurion University of the Negev, Beer Sheva 84105, Israel
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    DOI: 10.3788/COL20090708.0667 Cite this Article Set citation alerts
    I. Abdulhalim. Optimized guided mode resonant structure as thermooptic sensor and liquid crystal tunable filter[J]. Chinese Optics Letters, 2009, 7(8): 08667 Copy Citation Text show less
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    Data from CrossRef

    [1] Zeev Zalevsky, Ibrahim Abdulhalim. Integrated Nanophotonic Devices, 273(2014).

    [2] Zeev Zalevsky, Ibrahim Abdulhalim. Integrated Nanophotonic Devices, 59(2010).

    [3] Li-Min Chang, Chuan Ci Yin, Duan-Yi Guo, Chia-Wei Huang, Tsung-Hsien Lin, Chun-Ta Wang, Yung-Jr Hung. Polarization-controlled chirped guided-mode resonance filter incorporating a hybrid splay–twist liquid crystal. Applied Optics, 60, 10873(2021).

    [4] Chun-Ta Wang, Hao-Hsiang Hou, Ping-Chien Chang, Cheng-Chang Li, Hung-Chang Jau, Yung-Jr Hung, Tsung-Hsien Lin. Full-color reflectance-tunable filter based on liquid crystal cladded guided-mode resonant grating. Optics Express, 24, 22892(2016).

    [5] Chun-Ta Wang, Hao-Hsiang Hou, Ping-Chien Chang, Keng-Hsien Lin, Cheng-Chang Li, Hung-Chang Jau, Yung-Jr Hung, Tsung-Hsien Lin. Widely tunable guided-mode resonance filter using 90° twisted liquid crystal cladding. Optical Fiber Communication Conference, Th1G.5(2017).

    [6] I. Abdulhalim. Non-display bio-optic applications of liquid crystals. Liquid Crystals Today, 20, 44(2011).

    [7] Mohammad Y. Azab, Mohamed Farhat O. Hameed, Abed M. Nasr, S. S. A. Obayya. Computational Photonic Sensors, 233(2019).

    [8] Sivan Isaacs, Ansar Hajoj, Mohammad Abutoama, Alexander Kozlovsky, Erez Golan, Ibrahim Abdulhalim. Resonant Grating without a Planar Waveguide Layer as a Refractive Index Sensor. Sensors, 19, 3003(2019).

    [9] Akifumi Kato, Katsumi Nakatsuhara, Yoshiki Hayama. Switching Operation in Tunable Add-Drop Multiplexer With Si-Grating Waveguides Featuring Ferroelectric Liquid Crystal Cladding. Journal of Lightwave Technology, 32, 4464(2014).

    [10] Ting-Yu Lu, Wei-Fan Lu, Yin-Hsu Wang, Mei-Yi Liao, Yang Wei, Yu-Jui Fan, Er-Yuan Chuang, Jiashing Yu. Keratin-Based Nanoparticles with Tumor-Targeting and Cascade Catalytic Capabilities for the Combinational Oxidation Phototherapy of Breast Cancer. ACS Applied Materials & Interfaces, 13, 38074(2021).

    [11] Xiaojun Zhu, Delian Lu, Shanshan Ma, Haixia Da. Guided mode resonance-driven giant Goos–H?nchen shift in monolayer MoS2 based dielectric grating structure. Physica B: Condensed Matter, 643, 414173(2022).

    [12] Chao Ping Chen, Chul Gyu Jhun. Reflective Bistable Chiral Splay Nematic Liquid Crystal for Low-Power Heat Sensor. Sensors, 20, 5937(2020).

    [13] Fu-Lun Chen, Yu-Jui Fan, Jia-De Lin, Yu-Cheng Hsiao. Label-free, color-indicating, and sensitive biosensors of cholesteric liquid crystals on a single vertically aligned substrate. Biomedical Optics Express, 10, 4636(2019).

    [14] M. Y. Park, B. W. Kim, M. Moehrle, U. Troppenz, W. Rehbein, A. Sigmund, S. J. Hong. Liquid crystal filter based tunable transmitter for 25Gps wavelength division multiplexing-passive optical network fronthaul. Optics Express, 28, 38942(2020).

    [15] Mohammad Y. Azab, Mohamed Farhat. O. Hameed, S. S. A. Obayya. Multi-functional optical sensor based on plasmonic photonic liquid crystal fibers. Optical and Quantum Electronics, 49, 49(2017).

    [16] Zhibin Ren, Yahui Sun, Zihao Lin, Chunyu Wang. Tunable nonpolarizing one-dimensional crossed resonant gratings incorporating electrically driving liquid crystal. Journal of Optics, 21, 035003(2019).

    [17] Ibrahim Abdulhalim. Liquid crystal active nanophotonics and plasmonics: from science to devices. Journal of Nanophotonics, 6, 061001(2012).

    [18] Zeev Zalevsky, Ibrahim Abdulhalim. Integrated Nanophotonic Devices, 63(2014).

    [19] D. F. Bendimerad, B.-E. Benkelfat, R. Hamdi, Y. Gottesman, O. Seddiki, B. Vinouze. Channel Equalization and Bandwidth Tuning Using a LC-Based Tunable Hybrid Birefringent Filter. Journal of Lightwave Technology, 30, 2103(2012).

    [20] Saranya Bhupathi, Shancheng Wang, Mohammad Abutoama, Igal Balin, Lei Wang, Peter G. Kazansky, Yi Long, Ibrahim Abdulhalim. Femtosecond Laser-Induced Vanadium Oxide Metamaterial Nanostructures and the Study of Optical Response by Experiments and Numerical Simulations. ACS Applied Materials & Interfaces, 12, 41905(2020).

    [21] Sachin Babu, Jeong-Bong Lee. Axially-Anisotropic Hierarchical Grating 2D Guided-Mode Resonance Strain-Sensor. Sensors, 19, 5223(2019).

    [22] Marwan Abuleil, Ibrahim Abdulhalim. Narrowband multispectral liquid crystal tunable filter. Optics Letters, 41, 1957(2016).

    [23] Er-Yuan Chuang, Ping-Yuan Lin, Po-Feng Wang, Tsung-Rong Kuo, Chih-Hwa Chen, Yankuba B Manga, Yu-Cheng Hsiao. Label-Free, Smartphone-Based, and Sensitive Nano-Structural Liquid Crystal Aligned by Ceramic Silicon Compound–Constructed DMOAP-Based Biosensor for the Detection of Urine Albumin. International Journal of Nanomedicine, Volume 16, 763(2021).

    [24] Myeong Ock Ko, Sung-Jo Kim, Jong-Hyun Kim, Bong Wan Lee, Min Yong Jeon. Dynamic measurement for electric field sensor based on wavelength-swept laser. Optics Express, 22, 16139(2014).

    [25] Andrey E. Miroshnichenko, Sergej Flach, Yuri S. Kivshar. Fano resonances in nanoscale structures. Reviews of Modern Physics, 82, 2257(2010).

    [26] Myeong Ock Ko, Sung-Jo Kim, Jong-Hyun Kim, Bong Wan Lee, Min Yong Jeon. Measurement of Effective Refractive Index of Nematic Liquid Crystal in Fabry-Perot Etalon. Journal of the Optical Society of Korea, 19, 346(2015).

    [27] Yu-Jui Fan, Fu-Lun Chen, Jian-Chiun Liou, Yu-Wen Huang, Chun-Han Chen, Zi-Yin Hong, Jia-De Lin, Yu-Cheng Hsiao. Label-Free Multi-Microfluidic Immunoassays with Liquid Crystals on Polydimethylsiloxane Biosensing Chips. Polymers, 12, 395(2020).

    [28] Marwan J. AbuLeil, Doron Pasha, Isaac August, Evgeny P. Pozhidaev, Vadim A. Barbashov, Timofey P. Tkachenko, Artemy V. Kuznetsov, Ibrahim Abdulhalim. Helical Nanostructures of Ferroelectric Liquid Crystals as Fast Phase Retarders for Spectral Information Extraction Devices: A Comparison with the Nematic Liquid Crystal Phase Retarders. Materials, 14, 5540(2021).

    [29] Lakshmi Madhuri Pappu, R.J. Martin-Palma, B. Martín-Adrados, Ibrahim Abdulhalim. Voltage controlled scattering from porous silicon Mie-particles in liquid crystals. Journal of Molecular Liquids, 281, 108(2019).

    [30] Ryoji Yukino, Pankaj K. Sahoo, Jaiyam Sharma, Tsukasa Takamura, Joby Joseph, Adarsh Sandhu. Wide wavelength range tunable one-dimensional silicon nitride nano-grating guided mode resonance filter based on azimuthal rotation. AIP Advances, 7, 015313(2017).

    [31] A. Solodar, A. Cerkauskaite, R. Drevinskas, P. G. Kazansky, I. Abdulhalim. Ultrafast laser induced nanostructured ITO for liquid crystal alignment and higher transparency electrodes. Applied Physics Letters, 113, 081603(2018).

    [32] A. Shalabney, I. Abdulhalim. Sensitivity-enhancement methods for surface plasmon sensors. Laser & Photonics Reviews, 5, 571(2011).

    [33] D. C. Zografopoulos, R. Beccherelli. Long-range plasmonic directional coupler switches controlled by nematic liquid crystals. Optics Express, 21, 8240(2013).

    [34] Damian Wierzbicki, Michalina Wili??. Liquid crystal tunable filters in detecting water pollution. The 9th International Conference "Environmental Engineering 2014"(2014).

    [35] Edward Sader, Abdallah Sayyed-Ahmad. Design of an optical water pollution sensor using a single-layer guided-mode resonance filter. Photonic Sensors, 3, 224(2013).

    [36] Haw-Ming Huang, Er-Yuan Chuang, Fu-Lun Chen, Jia-De Lin, Yu-Cheng Hsiao. Color-Indicating, Label-Free, Dye-Doped Liquid Crystal Organic-Polymer-Based-Bioinspired Sensor for Biomolecule Immunodetection. Polymers, 12, 2294(2020).

    [37] Sivan Isaacs, Frank Placido, Ibrahim Abdulhalim. Investigation of liquid crystal Fabry–Perot tunable filters: design, fabrication, and polarization independence. Applied Optics, 53, H91(2014).

    [38] Colin McGinty, Robert Reich, Harry Clark, Valerie Finnemeyer, Shaun Berry, Philip Bos. Design of a sensitive uncooled thermal imager based on a liquid crystal Fabry–Perot interferometer. Applied Optics, 57, 8264(2018).

    [39] I-Te Wang, Yen-Hua Lee, Er-Yuan Chuang, Yu-Cheng Hsiao. Sensitive, Color-Indicating and Labeling-Free Multi-Detection Cholesteric Liquid Crystal Biosensing Chips for Detecting Albumin. Polymers, 13, 1463(2021).

    [40] Sheng-Fu Lin, Ting-Jou Ding, Jen-Tsai Liu, Chien-Chieh Lee, Tsung-Hsun Yang, Wen-Yih Chen, Jenq-Yang Chang. A Guided Mode Resonance Aptasensor for Thrombin Detection. Sensors, 11, 8953(2011).

    [41] Ibrahim Abdulhalim. Coupling configurations between extended surface electromagnetic waves and localized surface plasmons for ultrahigh field enhancement. Nanophotonics, 7, 1891(2018).

    [42] Shauli Shmilovich, Yaniv Oiknine, Marwan AbuLeil, Ibrahim Abdulhalim, Dan G. Blumberg, Adrian Stern. Dual-camera design for hyperspectral and panchromatic imaging, using a wedge shaped liquid crystal as a spectral multiplexer. Scientific Reports, 10, 3455(2020).

    [43] Ibrahim Abdulhalim. Tunable filter and modulator with controlled bandwidth and wide dynamic range based on planar thin films structure. Optics Express, 27, 16156(2019).

    I. Abdulhalim. Optimized guided mode resonant structure as thermooptic sensor and liquid crystal tunable filter[J]. Chinese Optics Letters, 2009, 7(8): 08667
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