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The study of narrow-band terahertz-wave generation by difference frequency mixing in periodical-inverted GaAs crystal with ps pump pulses

Wang Zhuo Wang Yu-Ye Yao Jian-Quan Wang Peng

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The study of narrow-band terahertz-wave generation by difference frequency mixing in periodical-inverted GaAs crystal with ps pump pulses

Wang Zhuo, Wang Yu-Ye, Yao Jian-Quan, Wang Peng
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  • In this paper, the tuning of walk-off length and the optimal period of periodical-inverted GaAs crystal in narrow-band terahertz-wave generation by difference frequency mixing was numerical simulated and analyzed in the condition of different wavelengths and durations of pump pulse.The influence of the number of domains of periodically-inverted GaAs crystal on the THz-wave spectrum was also studied.The temperature tuning properties in periodical-inverted GaAs crystal were calculated and analyzed with the temperature dependent Sellmeier function of GaAs crystal; the influence of temperature tuning on the THz-wave spectrum was also studied.The simulation showed a new way to generate the wide-tunable narrow-band THz wave with temperature tuning.These theoretical calculations served for the subsequent experiment as theoretical basis and reference.
    [1]

    [1]Nahata A, Weling A S, Heinz T F 1996 App. l Phys. Lett. 69 2321

    [2]

    [2]Siegel P H 2004 IEEE Transaction on Microwave Theory and Techniques 52 2438

    [3]

    [3]Liu H, Xu D G, Yao J Q 2008 Acta Phys. Sin. 57 5662 (in Chinese) [刘欢、徐德刚、姚建铨 2008 物理学报 57 5662]

    [4]

    [4]Li E B, Liu J S, Sun B, Yao J Q 2009 Chin. Phys. B 18 2846

    [5]

    [5]Liu S G, Zhang K C 2007 Acta Phys. Sin. 56 5258 (in Chinese) [刘盛纲、张开春 2007 物理学报 56 5258]

    [6]

    [6]Pavlov S G, Hubers H W, Orlova E E, Zhukavin R K, Riemann H, Nakata H, Shastin V N 2003 Phys. Stat. Sol. (b) 235 126

    [7]

    [7]Lee Y S,Norris T B 2002 J. Opt. Soc. Am. B 19 2791

    [8]

    [8]Lee Y S, Meade T, Perlin V, Winful H, Norris T B 2000 Appl. Phys. Lett. 76 2505

    [9]

    [9]Vodopyanov K L 2006 Opt. Express 14 2263

    [10]

    ]Imeshev G, Fermann M E, Vodopyanov K L, Fejer M M, Yu X, Harris J S, Bliss D, and Lynch C 2006 Opt. Express 14 4439

    [11]

    ]Vodopyanov K L2008 Laser & Photon. Rev. 2 11

    [12]

    ]Skauli T, Kuo P S, Vodopyanov K L, Pinguent T J, Levi O, Eyres L A, Harris J S, Fejer M M 2003 J. Appl. Phys. 94 6447

  • [1]

    [1]Nahata A, Weling A S, Heinz T F 1996 App. l Phys. Lett. 69 2321

    [2]

    [2]Siegel P H 2004 IEEE Transaction on Microwave Theory and Techniques 52 2438

    [3]

    [3]Liu H, Xu D G, Yao J Q 2008 Acta Phys. Sin. 57 5662 (in Chinese) [刘欢、徐德刚、姚建铨 2008 物理学报 57 5662]

    [4]

    [4]Li E B, Liu J S, Sun B, Yao J Q 2009 Chin. Phys. B 18 2846

    [5]

    [5]Liu S G, Zhang K C 2007 Acta Phys. Sin. 56 5258 (in Chinese) [刘盛纲、张开春 2007 物理学报 56 5258]

    [6]

    [6]Pavlov S G, Hubers H W, Orlova E E, Zhukavin R K, Riemann H, Nakata H, Shastin V N 2003 Phys. Stat. Sol. (b) 235 126

    [7]

    [7]Lee Y S,Norris T B 2002 J. Opt. Soc. Am. B 19 2791

    [8]

    [8]Lee Y S, Meade T, Perlin V, Winful H, Norris T B 2000 Appl. Phys. Lett. 76 2505

    [9]

    [9]Vodopyanov K L 2006 Opt. Express 14 2263

    [10]

    ]Imeshev G, Fermann M E, Vodopyanov K L, Fejer M M, Yu X, Harris J S, Bliss D, and Lynch C 2006 Opt. Express 14 4439

    [11]

    ]Vodopyanov K L2008 Laser & Photon. Rev. 2 11

    [12]

    ]Skauli T, Kuo P S, Vodopyanov K L, Pinguent T J, Levi O, Eyres L A, Harris J S, Fejer M M 2003 J. Appl. Phys. 94 6447

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Publishing process
  • Received Date:  08 April 2009
  • Accepted Date:  11 August 2009
  • Published Online:  15 May 2010

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