Academic literature on the topic 'Electro-optic effect'

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Journal articles on the topic "Electro-optic effect"

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Long, X. ‐C, R. A. Myers, S. R. J. Brueck, R. Ramer, K. Zheng, and S. D. Hersee. "GaN linear electro‐optic effect." Applied Physics Letters 67, no. 10 (1995): 1349–51. http://dx.doi.org/10.1063/1.115547.

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Jamison, S. P., A. M. MacLeod, G. Berden, D. A. Jaroszynski, and W. A. Gillespie. "Temporally resolved electro-optic effect." Optics Letters 31, no. 11 (2006): 1753. http://dx.doi.org/10.1364/ol.31.001753.

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TAI REN-ZHONO, LU FU-YUN, YUAN SHU-ZHONG, GUAN XIN-AN, and LI BING. "ELECTRO-OPTIC EFFECT IN PESO ACOUSTO-OPTIC MODULATOR." Acta Physica Sinica 41, no. 6 (1992): 1012. http://dx.doi.org/10.7498/aps.41.1012.

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Li, Changsheng. "Proposal for electro-optic multiplier based on dual transverse electro-optic Kerr effect." Applied Optics 47, no. 30 (2008): 5701. http://dx.doi.org/10.1364/ao.47.005701.

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Liu, Zhaojun, Qingpu Wang, Xingyu Zhang, et al. "Investigation of the electro-optic activity and the electro-optic effect of La3Ga5SiO14crystal." physica status solidi (a) 203, no. 10 (2006): 2501–5. http://dx.doi.org/10.1002/pssa.200622178.

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Chang, Yia‐Chung, J. N. Schulman, and U. Efron. "Electro‐optic effect in semiconductor superlattices." Journal of Applied Physics 62, no. 11 (1987): 4533–37. http://dx.doi.org/10.1063/1.339045.

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WEGENER, M., A. WITT, C. KLINGSHIRN, D. GNASS, Y. IYECHIKA, and D. JÄGER. "CdS SELF-ELECTRO-OPTIC EFFECT DEVICE." Le Journal de Physique Colloques 49, no. C2 (1988): C2–109—C2–112. http://dx.doi.org/10.1051/jphyscol:1988224.

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OHKE, Shigeaki, Yoshio CHO, and Takahiro OKABE. "Electro-optic effect in zincblende crystals." Review of Laser Engineering 15, no. 1 (1987): 2–11. http://dx.doi.org/10.2184/lsj.15.2.

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Yang, Lie-Kun, Bing Liu, Pan-Yu Qiao, et al. "Measurement of the Quadratic Electro-Optic Coefficient of KTN Crystal with an Electro-Optic Modulation System in the Presence of Polar Nano-Regions." Crystals 11, no. 10 (2021): 1234. http://dx.doi.org/10.3390/cryst11101234.

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An electro-optic modulation system was adopted for measuring the quadratic electro-optic coefficient of KTN crystal. Theoretical analysis and experimental results verified the feasibility of this method. The quadratic electro-optic coefficient of a KTN crystal chip, which has a Curie temperature of 0 °C, was measured using this system in the temperature range of 2 °C to 18 °C (Tc = 0 °C). The influences of temperature, AC voltage and frequency on the quadratic electro-optic coefficient were discussed. It was found that the relaxation effect of PNRs (polar nano-regions) played an important role
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Yang, Lie-Kun, Bing Liu, Pan-Yu Qiao, et al. "Measurement of the Quadratic Electro-Optic Coefficient of KTN Crystal with an Electro-Optic Modulation System in the Presence of Polar Nano-Regions." Crystals 11, no. 10 (2021): 1234. http://dx.doi.org/10.3390/cryst11101234.

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An electro-optic modulation system was adopted for measuring the quadratic electro-optic coefficient of KTN crystal. Theoretical analysis and experimental results verified the feasibility of this method. The quadratic electro-optic coefficient of a KTN crystal chip, which has a Curie temperature of 0 °C, was measured using this system in the temperature range of 2 °C to 18 °C (Tc = 0 °C). The influences of temperature, AC voltage and frequency on the quadratic electro-optic coefficient were discussed. It was found that the relaxation effect of PNRs (polar nano-regions) played an important role
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Dissertations / Theses on the topic "Electro-optic effect"

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Tian, Linan. "Liquid crystal blue phase for electro-optic displays." Thesis, University of Manchester, 2014. https://www.research.manchester.ac.uk/portal/en/theses/liquid-crystal-blue-phase-for-electrooptic-displays(0230a0fd-6cbb-4edb-a626-ae981fe75141).html.

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Liquid crystals are a vast and diverse class of materials which ranges from fluids made up of simple rods, polymers and solutions, to elastomers and biological organisms. Liquid crystal phases are neither crystalline, nor a ‘normal’ isotropic liquid, but lie somewhere in between these two common states of matter. Liquid crystals have found enormous use in display devices due to their electro-optic properties. In this thesis, the optical and electro-optical properties of some chiral liquid crystalline phases are studied. The optical and electro-optical behaviour of liquid crystalline blue phase
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Desmulliez, Marc P. Y. "Self-electro-optic-effect-device response analysis for optical computing." Thesis, Heriot-Watt University, 1995. http://hdl.handle.net/10399/767.

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Robson, John H. "The temperature dependence of the electro-optic kerr effect in solutions." Thesis, Aston University, 1993. http://publications.aston.ac.uk/9766/.

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A novel Kerr cell of greater optical path length and temperature stability has been designed and built. The Kerr effect experimental has been substantially automated using an Apple IIe computer. Software has been written allowing the computer to partially control the Kerr effect equipment and to acquire and analyse the relevant data. The temperature dependent electro-optic Kerr effect of 2-methyl-4-nitroaniline, p-nitroaniline, nitrobenzene, aniline, and toluene as solutions in 1, 4-dioxane has been studied. The Kerr effect measurements combined with dipole moment, depolarisation ratio, dielec
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Park, Dong Hun. "Characterization of linear electro-optic effect of poled organic thin films." College Park, Md.: University of Maryland, 2008. http://hdl.handle.net/1903/7861.

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Thesis (Ph. D.) -- University of Maryland, College Park, 2008.<br>Thesis research directed by: Dept. of Electrical and Computer Engineering . Title from t.p. of PDF. Includes bibliographical references. Published by UMI Dissertation Services, Ann Arbor, Mich. Also available in paper.
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Musgrave, Bronje. "Electro-optic studies of the flexoelectric effect in chiral nematic liquid crystals." Thesis, University of Southampton, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.313146.

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Lentine, Anthony L. "Issues in the design of self electro-optic effect devices for optical signal processing." Thesis, Heriot-Watt University, 1993. http://hdl.handle.net/10399/1474.

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Varanytsia, Andrii. "Augmenting Electro-Optic and Optical Behavior of Cholesteric and Nematic Liquid Crystals." Kent State University / OhioLINK, 2018. http://rave.ohiolink.edu/etdc/view?acc_num=kent1532526040658373.

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Sathian, Juna. "Investigation of the intensity dependence of amplitude noise in electro-optic phase modulators." Thesis, Queensland University of Technology, 2013. https://eprints.qut.edu.au/63003/1/Juna_Sathian_Thesis.pdf.

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This thesis studied the source of instability in optical phase modulators used in high accuracy laser measurement systems. The nonlinear origin of the amplitude noise helped further reducing this instability in applications that rely on phase modulators to function. This outcome will have positive impacts on the development of new methods in the amplitude noise suppression.
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Nakamura, K., K. Kato, H. Koide, Y. Hatta, and H. Okubo. "Fundamental Property of Electric Field in Rapeseed Ester Oil based on Kerr Electro-Optic Measurement." IEEE, 2006. http://hdl.handle.net/2237/9624.

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Prasad, Saurabh. "Radio over fiber for 3G cellular System." Thesis, Kolhapur Institute of Technology College of Engineering, 2010. http://hdl.handle.net/10919/71529.

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The demand for bandwidth is increasing vigorously. Thus wired network is using fiber optic telephone line instead of coaxial cable. The concept of Fiber to the Home (FTTH) is really coming into picture. Few countries like Japan, Korea etc are leading in this technology. But now the major challenge is how to provide the high speed internet connection wirelessly. Thus the change is to integrate the wireless and optical fiber communication.<br>Wireless Optical Communication
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Books on the topic "Electro-optic effect"

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Price, Nigel Ross. A radio astronomy correlator using the electro-optic effect. National Library of Canada = Bibliothèque nationale du Canada, 1992.

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Robson, John Henry. The temperature dependence of the electro-optic kerr effect in solutions. Aston University. Department of Chemical Engineering and Applied Chemistry, 1993.

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Electro-Optic Effects in Thermotropic Liquid Crystals. Nova Science Pub Inc, 2015.

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Solymar, L., D. Walsh, and R. R. A. Syms. Optoelectronics. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198829942.003.0013.

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The properties of light detectors and light emitting diodes (LEDs) are discussed. Electro-optic, photorefractive, and nonlinear materials are introduced. The phenomenon of phase conjugation is explained. Interaction between acoustic and light waves is shown to be possible. The significance of integrated optics is discussed. Bistability due to the action of nonlinear Fabry–Perot cavities is explained. Optical switching is shown to be an application of micro-electro-mechanical effects. The complicated phenomenon electro-absorption in quantum well structures and its applications are discussed.
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Book chapters on the topic "Electro-optic effect"

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Schmeller, A., A. Koll, Ch Peters, et al. "In-Plane Electro-Optic Effect in a Quantum Well." In Confined Electrons and Photons. Springer US, 1995. http://dx.doi.org/10.1007/978-1-4615-1963-8_31.

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Yoshimura, Tetsuzo. "Theoretically-Predicted Electro-Optic (EO) Effect in Polymer MQDs." In Molecular Layer Deposition for Tailored Organic Thin-Film Materials. CRC Press, 2023. http://dx.doi.org/10.1201/9781003094012-7.

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Tang, X., K. G. Irvine, D. Zhang, and M. G. Spencer. "Observation of Linear Electro-Optic Effect in Cubic Silicon Carbide." In Springer Proceedings in Physics. Springer Berlin Heidelberg, 1992. http://dx.doi.org/10.1007/978-3-642-84804-9_30.

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Šrobár, F. "Nature of Internal Feedback in the Self-Electro-Optic Effect Devices." In Heterostructure Epitaxy and Devices. Springer Netherlands, 1996. http://dx.doi.org/10.1007/978-94-009-0245-9_56.

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Prajapat, Manisha, Ankur Saharia, and Ghanshyam Singh. "Design of Half Adder Using Electro-Optic Effect in Mach–Zehnder Interferometer." In Lecture Notes in Electrical Engineering. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-2926-9_29.

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Chirovsky, L. M. F., L. A. D’Asaro, J. M. Freund, et al. "Improving the Performance of Large Arrays of Symmetric Self Electro-optic Effect Devices." In Photonic Switching II. Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-76023-5_38.

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Satoh, Keisuke, Akio Sugama, Masatoshi Ishii, Masao Kondo, and Kazuaki Kurihara. "Crystal Phase and Orientation Dependence of Electro-Optic Effect in Epitaxial PLZT an PZT Films." In Electroceramics in Japan X. Trans Tech Publications Ltd., 2007. http://dx.doi.org/10.4028/0-87849-449-9.99.

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Liu, H. F., and T. Kamiya. "Femtosecond Pulse Generation from Semiconductor Lasers Using Soliton Effect Compression and its Application to Ultrafast Electro-Optic Sampling Measurements." In Solid-State Science and Technology Library. Springer Netherlands, 1996. http://dx.doi.org/10.1007/978-94-009-1736-1_9.

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Fontein, P. F., J. A. Kleinen, P. Hendriks, et al. "The Spatial Potential Distribution in GaAs/AlxGa1-xAs Heterostructures Under Quantum Hall Conditions Studied with the Linear Electro-Optic Effect." In Localization and Confinement of Electrons in Semiconductors. Springer Berlin Heidelberg, 1990. http://dx.doi.org/10.1007/978-3-642-84272-6_18.

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Raynes, E. P. "Electro-optic Effects in Liquid Crystals." In Electronic Materials. Springer US, 1991. http://dx.doi.org/10.1007/978-1-4615-3818-9_26.

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Conference papers on the topic "Electro-optic effect"

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Pan, Jing-Jong, and Edward Lee. "Field-effect electro-optic modulators." In Aerospace Sensing, edited by Shi-Kay Yao and Brian M. Hendrickson. SPIE, 1992. http://dx.doi.org/10.1117/12.138395.

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Zhang, Jianzhong, Zhongkong Wu, and Francis T. S. Yu. "Electro-optic effect of photorefractive hologram." In SPIE's 1996 International Symposium on Optical Science, Engineering, and Instrumentation, edited by Francis T. S. Yu and Shizhuo Yin. SPIE, 1996. http://dx.doi.org/10.1117/12.255499.

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Yu, Kuanxin, Shiya He, Baoseng Zhao, and Peng Ding. "Multidimensional isotropic acousto-electro-optic effect." In Photonics Asia 2002, edited by Guoguang Mu, Francis T. S. Yu, and Suganda Jutamulia. SPIE, 2002. http://dx.doi.org/10.1117/12.483269.

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Miller, Steven, Yoon-Ho Daniel Lee, Jaime Cardenas, Alexander L. Gaeta, and Michal Lipson. "Electro-optic effect in silicon nitride." In CLEO: Science and Innovations. OSA, 2015. http://dx.doi.org/10.1364/cleo_si.2015.sf1g.4.

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Suchanska, Malgorzata, Radoslaw Belka, and Stanislaw Kaluza. "Electro-optic effect in some A2MX4 crystals." In SPIE Proceedings, edited by Jan Dorosz and Ryszard S. Romaniuk. SPIE, 2003. http://dx.doi.org/10.1117/12.497761.

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Berry, M. H., and D. M. Gookin. "Electro-Optic Effect In Polyvinylidene Fluoride-Trifluoroethylene." In 32nd Annual Technical Symposium, edited by Garo Khanarian. SPIE, 1988. http://dx.doi.org/10.1117/12.948227.

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Horbatuck, Suzanne M., and Thomas G. Brown. "Avalanche-enhanced self-electro-optic-effect device." In OSA Annual Meeting. Optica Publishing Group, 1992. http://dx.doi.org/10.1364/oam.1992.wq2.

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The ability to enhance optical nonlinearities associated with the photogeneration of free carriers can be accomplished with carrier multiplication. The gain mechanism provided by carrier multiplication is inherently feasible in avalanche photodiodes. We present results from optical bistability experiments performed on silicon avalanche photodiodes under reverse bias conditions in the case of thermal nonlinearities (Joule heating) and electronic nonlinearities (free carrier plasma effects). The reflected intensity versus the operating voltage is measured at the input intensity of the diode, as
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Lentine, Anthony L. "Application Specific Self Electro-optic Effect Devices." In Nonlinear Optics. Optica Publishing Group, 1992. http://dx.doi.org/10.1364/nlo.1992.mc1.

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A few years ago, the predominant area of research in optical computing devices was to try to develop devices that could behave as optical logic gates or more specifically NOR gates. In theory, one could optically interconnect these NOR gates to implement arbitrary digital functions and ultimately a digital optical computer. Bistable devices based on non-linear optical materials in Fabry-Perot etalons were among those proposed, for these NOR gates [1,2] A variety of optoelectronic devices have also been investigated. One group of devices called self electro-optic effect devices (SEEDs) rely on
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Chirovsky, L. M. F., L. A. D’Asaro, C. W. Tu, A. L. Lentine, G. D. Boyd, and D. A. B. Miller. "Batch-Fabricated Symmetric Self-Electro-Optic Effect Devices." In Photonic Switching. Optica Publishing Group, 1989. http://dx.doi.org/10.1364/phs.1989.qwd2.

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The Symmetric Self Electro-optic Effect Device has been previously shown to have the minimum of the device characteristics necessary for digital optics systems and many additional desirable features. We describe here the design and fabrication of arrays of Symmetric Self Electro-optic Effect Devices with an internal dielectric minor. Advantages of this design compared to previous transmissive designs include: amenability to batch fabrication, shorter switching times, increased output beam contrast and better heat-sinking. We present details of the necessary epitaxial growth, the dielectric mir
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Li, Luksun, and David N. Payne. "Permanently-induced Linear Electro-Optic Effect in Silica Optical Fibres." In Integrated and Guided Wave Optics. Optica Publishing Group, 1989. http://dx.doi.org/10.1364/igwo.1989.tuaa2.

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Permanent electric-field-induced linear electro-optic effects have been observed in fused-silica optical fibres subjected to strong electric fields by means of internal electrodes. This electric-field-poling phenomenon can be used to construct a Pockels modulator and other electro-optic devices.
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Reports on the topic "Electro-optic effect"

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Jain, Ravinder. Novel All-Fiber Devices Based on the Electro-Optic Effect in Poled Fused Silica. Defense Technical Information Center, 2002. http://dx.doi.org/10.21236/ada401209.

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Battiato, James M., Thomas W. Stone, Miles J. Murdocca, Rebecca J. Bussjager, and Paul R. Cook. Free Space Optical Memory Based on Vertical Cavity Surface Emitting Lasers and Self-Electro-Optic Effect Devices. Defense Technical Information Center, 1995. http://dx.doi.org/10.21236/ada297049.

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Goodson, T., Wang III, and C. H. Dispersion and Dipolar Orientational Effects on the Linear Electro-Absorption and Electro-Optic Responses in a Model Guest/Host Nonlinear Optical System. Defense Technical Information Center, 1996. http://dx.doi.org/10.21236/ada311120.

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