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1

1959-, Lo Yu-Hwa, ed. Emerging optoelectronic technologies and applications. World Scientific, 1997.

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2

Maini, Anil Kumar. Lasers and optoelectronics: Fundamentals, devices, and applications. Wiley, 2013.

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3

Predeep, P. Optoelectronics: Devices and applications. InTech, 2011.

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4

Mitra, Dutta, and Stroscio Michael A. 1949-, eds. Advances in semiconductor lasers and applications to optoelectronics. World Scientific, 2000.

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5

Nunley, William. Infrared optoelectronics: Devices and applications. M. Dekker, 1987.

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6

1932-, Weber Marvin J., ed. Selected papers on phosphors, light emitting diodes, and scintillators: Applications of photoluminescence, cathodoluminescence, electroluminescence, and radioluminescence. SPIE Optical Engineering Press, 1998.

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7

M, Razeghi, Society of Photo-optical Instrumentation Engineers., Europtica Services I. C, American Physical Society, and International Conference on Physical Concepts of Materials for Novel Optoelectronic Device Applications (1990 : Aachen, Germany), eds. Physical concepts of materials for novel optoelectronic device applications II: Device physics and applications : 28 October-2 November 1990, Aachen, Federal Republic of Germany. SPIE, 1991.

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8

Brasche, Ulrich. Intelligent sensors: Technology, applications, and European markets. VDE-Verlag, 1989.

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9

Dave, Birtalan, Nunley William 1928-, and Nunley William 1928-, eds. Optoelectronics: Infrared-visible-ultraviolet devices and applications. 2nd ed. CRC Press, 2009.

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10

Haben, Michael S. Applications of optoelectronics in high-energy physics. University ofBirmingham, 1994.

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11

K, Chin Aland, ed. Testing, reliability, and applications of optoelectronic devices: 24-26 January, 2001, San Jose, [California] USA. SPIE, 2001.

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12

Li, Quan. Liquid crystals beyond displays: Chemistry, physics, and applications. John Wiley & Sons, Inc., 2012.

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13

M, Razeghi, Society of Photo-optical Instrumentation Engineers., Europtica Services I. C, and American Physical Society, eds. Physical concepts of materials for novel optoelectronic device applications I: Materials growth and characterization : 28 October-2 November 1990, Aachen, Federal Republic of Germany. SPIE, 1991.

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14

Yanxi, Liang, ed. Jun yong guang dian ji shu yu xi tong gai lun. Guo fang gong ye chu ban she, 2011.

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15

1964-, Prather Dennis W., ed. Photonic crystals: Theory, applications, and fabrication. Wiley, 2009.

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16

Symposium, L. on III-V. Nitrides Semiconductors and Ceramics (1997 Strasbourg France). III-V nitrides, semiconductors, and ceramics: From material growth to device applications : proceedings of Symposium L on III-V Nitrides, Semiconductors, and Ceramics : from material growth to device applications of the 1997 ICAM/E-MRS Spring Conference, Strasbourg, France, June 16-20, 1997. Elsevier, 1997.

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17

Stavros, Iezekiel, ed. Microwave photonics: Devices and applications. Wiley, 2009.

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18

A, Lessard Roger, Frank Werner F, and Society of Photo-optical Instrumentation Engineers., eds. Polymers in optics: Physics, chemistry, and applications. SPIE Optical Engineering Press, 1996.

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19

Andriesh, Andrei, and Mario Bertolotti, eds. Physics and Applications of Non-Crystalline Semiconductors in Optoelectronics. Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-011-5496-3.

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20

M, Andriesh A., Bertolotti M, and NATO Advanced Research Workshop on Physics and Applications of Non-Crystalline Semiconductors in Optoelectronics (1996 : Chișinău, Moldova), eds. Physics and applications of non-crystalline semiconductors in optoelectronics. Boston, 1997.

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21

Andriesh, Andrei. Physics and Applications of Non-Crystalline Semiconductors in Optoelectronics. Springer Netherlands, 1997.

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22

Essentials of optoelectronics: With applications. Chapman & Hall, 1997.

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23

Shulika, Oleksiy, and Igor Sukhoivanov. Contemporary Optoelectronics: Materials, Metamaterials and Device Applications. Springer, 2015.

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24

Shulika, Oleksiy, and Igor Sukhoivanov. Contemporary Optoelectronics: Materials, Metamaterials and Device Applications. Springer, 2015.

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25

Shulika, Oleksiy, and Igor Sukhoivanov. Contemporary Optoelectronics: Materials, Metamaterials and Device Applications. Springer, 2015.

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26

Shulika, Oleksiy, and Igor Sukhoivanov. Contemporary Optoelectronics: Materials, Metamaterials and Device Applications. Springer, 2016.

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27

Predeep, P., ed. Optoelectronics - Devices and Applications. InTech, 2011. http://dx.doi.org/10.5772/1036.

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28

Selvarajan, A. Optoelectronics: Technologies and Applications. Society of Photo Optical, 1993.

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29

Optoelectronics: Technologies and applications. SPIE Optical Engineering Press, 1993.

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30

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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31

Advances in Semiconductor Lasers and Applications to Optoelectronics. World Scientific Publishing Co Pte Ltd, 2000.

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32

Wada, Osamu. Optoelectronic Integration: Physics, Technology and Applications. Springer London, Limited, 2013.

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33

Wada, Osamu. Optoelectronic Integration: Physics, Technology and Applications. Springer, 2014.

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34

Crain, Jason, and T. Fukuzawa. Molecular Materials & Optoelectronic Applications. John Wiley & Sons, 2004.

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35

Crain, Jason, and T. Fukuzawa. Molecular Materials & Optoelectronic Applications. John Wiley & Sons, 2004.

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36

Lo, Yu-Hwa. Emerging Optoelectronic Technologies and Applications. World Scientific Publishing Co Pte Ltd, 1997.

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37

Liu, Dong, and Zhenqiang Ma. Inorganic Flexible Optoelectronics: Materials and Applications. Wiley-VCH Verlag GmbH, 2019.

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38

Liu, Dong, and Zhenqiang Ma. Inorganic Flexible Optoelectronics: Materials and Applications. Wiley & Sons, Incorporated, John, 2019.

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39

Liu, Dong, and Zhenqiang Ma. Inorganic Flexible Optoelectronics: Materials and Applications. Wiley & Sons, Incorporated, John, 2019.

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40

Liu, Dong, and Zhenqiang Ma. Inorganic Flexible Optoelectronics: Materials and Applications. Wiley & Sons, Incorporated, John, 2019.

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41

Balkan, Naci, and Ayşe Erol. Semiconductors for Optoelectronics: Basics and Applications. Springer, 2021.

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42

Erol, Ayşe, and Naci Balkan. Semiconductors for Optoelectronics: Basics and Applications. Springer, 2016.

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43

MEMS/MOEMS technologies and applications: 17-18 October, 2002, Shanghai, China. SPIE, 2002.

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44

Yusoff, Abdul Rashid bin M. Graphene Optoelectronics: Synthesis, Characterization, Properties, and Applications. Wiley & Sons, Incorporated, John, 2014.

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45

Abdul Rashid bin M. Yusoff. Graphene Optoelectronics: Synthesis, Characterization, Properties, and Applications. Wiley & Sons, Limited, John, 2014.

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46

Abdul Rashid bin M. Yusoff. Graphene Optoelectronics: Synthesis, Characterization, Properties, and Applications. Wiley & Sons, Limited, John, 2014.

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47

Abdul Rashid bin M. Yusoff. Graphene Optoelectronics: Synthesis, Characterization, Properties, and Applications. Wiley & Sons, Incorporated, John, 2014.

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48

Abdul Rashid bin M. Yusoff. Graphene Optoelectronics: Synthesis, Characterization, Properties, and Applications. Wiley & Sons, Incorporated, John, 2014.

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49

Yoshimura, Tetsuzo. Optical Electronics: Self-Organized Integration and Applications. Pan Stanford Publishing, 2012.

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50

Wada, Osamu. Optoelectronic Integration: Physics, Technology, and Applications (The International Series in Engineering and Computer Science). Springer, 1994.

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