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1

Consonni, Vincent, and Guy Feuillets, eds. Wide Band Gap Semiconductor Nanowires 2. John Wiley & Sons, Inc., 2014. http://dx.doi.org/10.1002/9781118984291.

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2

Consonni, Vincent, and Guy Feuillet, eds. Wide Band Gap Semiconductor Nanowires 1. John Wiley & Sons, Inc., 2014. http://dx.doi.org/10.1002/9781118984321.

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3

Buzzo, Marco. Dopant imaging and profiling of wide bandgap semiconductor devices. Hartung-Gorre, 2007.

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4

Szweda, Roy. Gallium nitride & related wide bandgap materials & devices: A market & technology overview 1996-2001. Elsevier Advanced Technology, 1997.

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5

Trieste ICTP-IUPAP Semiconductor Symposium (7th 1992). Wide-band-gap semiconductors: Proceedings of the Seventh Trieste ICTP-IUPAP Semiconductor Symposium, International Centre for Theoretical Physics, Trieste, Italy, 8-12 June 1992. Edited by Van de Walle, Chris Gilbert. North-Holland, 1993.

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6

National Research Council (U.S.). Committee on Materials for High-Temperature Semiconductor Devices., ed. Materials for high-temperature semiconductor devices. National Academy Press, 1995.

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7

1992), Trieste IUPAP-ICTP Semiconductor Symposium (7th. Wide-band-gap semiconductors: Proceedings of the seventh Trieste ICTP-IUPAP Semiconductor Symposium, International Centre for Theoretical Physics, Trieste, Italy, 8-12 June 1992. North Holland, 1993.

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8

H, Carter Calvin, and Materials Research Society. Meeting Symposium D., eds. Diamond, SiC and nitride wide bandgap semiconductors: Symposium held April 4-8, 1994, San Francisco, California, U.S. Materials Research Society, 1994.

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9

Pearton, S. J. Processing of wide bandgap semiconductors. Noyes Publications/William Andrews Pub., 1999.

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10

Bhargava, Rameshwar. Properties of wide bandgap II-VI semiconductors. IEE, INSPEC, 2006.

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11

Fan, Ren, and Zolper J. C, eds. Wide energy bandgap electronic devices. World Scientific Pub., 2003.

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12

1958-, Rotman Stanley R., ed. Wide-gap luminescent materials: Theory and applications. Kluwer Academic Publishers, 1997.

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13

N, Matsuo, ed. Select topics in wide bandgap materials. Stefan University Press, 2004.

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14

Ferro, Gabriel. 2010 wide bandgap cubic semiconductors: From growth to devices : proceedings of the E-MRS Symposium F, Strasbourg, France, 8-10 June 2010. Edited by European Materials Research Society. Meeting, American Institute of Physics, and European Science Foundation. American Institute of Physics, 2010.

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15

Philadelphia, Pa ). State-of-the-Art Program on Compound Semiconductors (36th 2002. State-of-the-Art Program on Compound Semiconductors XXXVI and Wide Bandgap Semiconductors for Photonic and Electronic Devices and Sensors II: Proceedings of the international symposia. Electrochemical Society, 2002.

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16

Symposium on Wide Bandgap Semiconductors and Devices (1995 Chicago, Ill.). Proceedings of the Symposium on Wide Bandgap Semiconductors and Devices and the Twenty-Third State-of-the-Art Program on Compound Semiconductors (SOTAPOCS XXIII). Electrochemical Society, 1995.

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17

1921-, Bhargava Rameshwar Nath, ed. Properties of wide bandgap II-VI semiconductors. INSPEC, Institute of Electrical Engineers, 1997.

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18

F, Neumark Gertrude, Kuskovsky Igor L, and Jiang H. X, eds. Wide bandgap light emitting materials and devices. Wiley-VCH, 2007.

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19

NATO Advanced Research Workshop on Growth and Optical Properties of Wide-Gap II-VI Low-Dimensional Semiconductors (1988 Regensburg, Germany). Growth and optical properties of wide-gap II-VI low-dimensional semiconductors. Plenum Press, 1989.

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20

J, Pearton S., ed. Wide bandgap semiconductors: Growth, processing and applications. Noyes Publications, 2000.

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21

Steven, Binari, ed. Wide-bandgap semiconductors for high-power, high-frequency, and high temparture applications--1999: Symposium held April 5-8, 1999, San Francisco, California, U.S.A. Materials Research Society, 1999.

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22

McGill, T. C., C. M. Sotomayor Torres, and W. Gebhardt, eds. Growth and Optical Properties of Wide-Gap II–VI Low-Dimensional Semiconductors. Springer US, 1989. http://dx.doi.org/10.1007/978-1-4684-5661-5.

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23

McGill, T. C. Growth and Optical Properties of Wide-Gap II-VI Low-Dimensional Semiconductors. Springer US, 1989.

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24

Symposium L on Nitrides and Related Wide Band Gap Materials of the E-MRS (1998 Strasbourg, France). Nitrides and related wide band gap materials: Proceedings of Symposium L on Nitrides and Related Wide Band Gap Materials of the E-MRS 1998 Spring Conference, Strasbourg, France, June 16-19, 1998. Elsevier, 1999.

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25

D, Moustakas T., Pankove Jacques I. 1922-, and Hamakawa Yoshihiro 1932-, eds. Wide band gap semiconductors: Symposium held December 2-6, 1991, Boston, Massachusetts, U.S.A. Materials Research Society, 1992.

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26

Yi-Gao, Sha, and United States. National Aeronautics and Space Administration., eds. Growth of wide band gap II-VI compound semiconductors by physical vapor transport. National Aeronautics and Space Administration, 1995.

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27

Yi-Gao, Sha, and United States. National Aeronautics and Space Administration., eds. Growth of wide band gap II-VI compound semiconductors by physical vapor transport. National Aeronautics and Space Administration, 1995.

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28

International Workshop on Nitride Semiconductors (2000 Nagoya, Japan). Proceedings of International Workshop on Nitride Semiconductors: [IWN 2000 : September 24-27, 2000, NagoyaCongress Center, Nagoya, Japan]. IPAP, 2000.

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29

United States. National Aeronautics and Space Administration., ed. Bulk growth of wide band gap II-VI compound semiconductors by physical vapor transport. Society of Photo-Optical Instrumentation Engineers, 1997.

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30

Symposium, L. on Nitrides and Related Wide Band Gap Materials (1998 Strasbourg France). Nitrides and related wide band gap materials: Proceedings of Symposium L on Nitrides and Related Wide Band Gap Materials of the E-MRS 1998 Spring Conference, Strasbourg, France 16-19 June 1998. Elsevier, 1999.

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31

Yang, Fan. Electromagnetic band gap structures in antenna engineering. Cambridge University Press, 2008.

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32

Osiński, Marek. Gallium-nitride-based technologies: Proceedings of a conference held 21-22 January 2002, San Jose, Califoinia. SPIE Optical Engineering Press, 2002.

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33

Symposium, C. on Growth Characterisation and Applications of Bulk II-VIs (1998 Strasbourg France). Growth, characterisation and applications of bulk II-VIs: Proceedings of Symposium C on Growth, Characterisation and Applications of Bulk II-VIs of the 1998 E-MRS Spring Conference, Strasbourg, France, June 16-18, 1998. Elsevier, 1999.

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34

G, Spencer M., and International Conference on SiC and Related Materials (5th : 1993 : Washington, D.C.), eds. Silicon carbide and related materials: Proceedings of the fifth conference, 1-3 November 1993, Washington, DC, USA. Institute of Physics Pub., 1994.

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35

R, Triboulet, Aulombard R. L, and Mullin J. B, eds. Wide gap II-VI semiconductors: Proceedings of the E-MRS Advanced Research Workshop, Montpellier, 16-18 January, 1991. Adam Hilger, 1991.

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36

Litvinov, Vladimir. Wide Bandgap Semiconductor Spintronics. Jenny Stanford Publishing, 2016.

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37

Wide Bandgap Semiconductor Spintronics. Taylor & Francis Group, 2016.

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38

Litvinov, Vladimir. Wide Bandgap Semiconductor Spintronics. Jenny Stanford Publishing, 2016.

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39

Wide Bandgap Semiconductor Spintronics. Jenny Stanford Publishing, 2024.

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40

Consonni, Vincent, and Guy Feuillet. Wide Band Gap Semiconductor Nanowires for Optical Devices. Wiley & Sons, Incorporated, John, 2014.

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41

Characterization of Wide Bandgap Power Semiconductor Devices. Institution of Engineering & Technology, 2018.

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42

Wang, Fei, Zheyu Zhang, and Edward A. Jones. Characterization of Wide Bandgap Power Semiconductor Devices. Institution of Engineering & Technology, 2018.

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43

Consonni, Vincent, Guy Feuillet, and Robert Baptist. Wide Band Gap Semiconductor Nanowires 2: Heterostructures and Optoelectronic Devices. Wiley & Sons, Incorporated, John, 2014.

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44

Consonni, Vincent, Guy Feuillet, and Robert Baptist. Wide Band Gap Semiconductor Nanowires 2: Heterostructures and Optoelectronic Devices. Wiley & Sons, Incorporated, John, 2014.

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45

Consonni, Vincent, Guy Feuillet, and Robert Baptist. Wide Band Gap Semiconductor Nanowires 2: Heterostructures and Optoelectronic Devices. Wiley-Interscience, 2014.

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46

Consonni, Vincent, Guy Feuillet, and Robert Baptist. Wide Band Gap Semiconductor Nanowires 2: Heterostructures and Optoelectronic Devices. Wiley & Sons, Incorporated, John, 2014.

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47

Szweda, R. Gallium Nitride and Related Wide Bandgap Materials & Devices. A Market and Technology Overview 1998-2003. 2nd ed. Elsevier Science, 2000.

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48

Consonni, Vincent, and Guy Feuillet. Wide Band Gap Semiconductor Nanowires 1: Low-Dimensionality Effects and Growth. Wiley & Sons, Incorporated, John, 2014.

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49

Consonni, Vincent, Guy Feuillet, and Robert Baptist. Wide Band Gap Semiconductor Nanowires 1: Low-Dimensionality Effects and Growth. Wiley & Sons, Incorporated, John, 2014.

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50

Consonni, Vincent, Guy Feuillet, and Robert Baptist. Wide Band Gap Semiconductor Nanowires 1: Low-Dimensionality Effects and Growth. Wiley & Sons, Incorporated, John, 2014.

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