• Frontiers of Optoelectronics
  • Vol. 2, Issue 3, 299 (2009)
A. SAGISAKA1、*, H. DAIDO2, A. S. PIROZHKOV2, M. MORI2, A. YOGO2, K. OGURA2, S. ORIMO2, M. NISHIUCHI2, J. MA2, H. KIRIYAMA2, S. KANAZAWA2, S. KONDO2, Y. NAKAI2, T. SHIMOMURA2, M. TANOUE2, A. AKUTSU2, H. OKADA2, T. MOTOMURA2, T. KAWACHI2, S. V. BULANOV2、3、4, Timur Zh. ESIRKEPOV2、4, S. NASHIMA5, Makoto HOSODA2, Hideo NAGATOMO6, Y.J. OISHI7, K. NEMOTO2, Il Woo CHOI8, S. LEE2, and J. LEE2
Author Affiliations
  • 1Advanced Photon Research Center and Photo-Medical Research Center, Japan Atomic Energy Agency, Kizugawa 619-0215, Japan
  • 2[in Chinese]
  • 3A. M. Prokhorov Institute of General Physics, Russian Academy of Sciences, Moscow 119991, Russia
  • 4Moscow Institute of Physics and Technology, Dolgoprudny 141700, Russia
  • 5Department of Applied Physics, Graduate School and Faculty of Engineering, Osaka City University, Osaka 558-8585, Japan
  • 6Institute of Laser Engineering, Osaka University, Osaka 565-0871, Japan
  • 7Central Research Institute of Electric Power Industry, Yokosuka 240-0196, Japan
  • 8Advanced Photonics Research Institute, Gwangju Institute of Science and Technology, Gwangju 500-712, Republic of Korea
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    DOI: 10.1007/s12200-009-0046-4 Cite this Article
    A. SAGISAKA, H. DAIDO, A. S. PIROZHKOV, M. MORI, A. YOGO, K. OGURA, S. ORIMO, M. NISHIUCHI, J. MA, H. KIRIYAMA, S. KANAZAWA, S. KONDO, Y. NAKAI, T. SHIMOMURA, M. TANOUE, A. AKUTSU, H. OKADA, T. MOTOMURA, T. KAWACHI, S. V. BULANOV, Timur Zh. ESIRKEPOV, S. NASHIMA, Makoto HOSODA, Hideo NAGATOMO, Y.J. OISHI, K. NEMOTO, Il Woo CHOI, S. LEE, J. LEE. High-intensity laser-driven particle and electromagnetic wave sources for science, industry, and medicine[J]. Frontiers of Optoelectronics, 2009, 2(3): 299 Copy Citation Text show less
    References

    [1] Daido H, Sagisaka A, Ogura K, Orimo S, Nishiuchi M, Yogo A, Mori M, Li Z, Kiriyama H, Kanazawa S, Akutsu A, Nakai Y, Piroshkov A, Bulanov S, Esirkepov T, Kimura T, Tajima T, Nemoto K, Oishi Y, Nayuki T, Fujii T, Zhidkov A, Noda A, Nakamura S, Choi IW, Yu T J, Sung J H, Kim H T, Jeong T M, Hong K H, Kim J H, Noh Y C, Ko D K, Lee J, Nashima S, Shimizu K, Hosoda M. Intense femto-second laser-driven X-ray source coupled with multiple directional quantum beams for applications. In: Nickles P V, Janulewicz K A, eds. X-Ray Lasers 2006, Proceedings of the 10th International Conference. Springer Proceedings in Physics. Springer Netherlands, 2007, 115: 595-605

    [2] Murakami M, Hishikawa Y, Miyajima S, Okazaki Y, Sutherland K L, Abe M, Bulanov S V, Daido H, Esirkepov T Zh, Koga J, Yamagiwa M, Tajjima T. Radiotherapy using a laser proton accelerator. In: Laser-Driven Relativistic Plasmas Applied for Science, Industry, and Medicine. American Institute of Physics Conference Proceedings. 2008, 1024: 275-300

    [3] Bulanov S V, Esirkepov T Zh, Khoroshkov V S, Kuznetsov A V, Pegoraro F. Oncological hadrontherapy with laser ion accelerators. Physics Letters A, 2002, 299(2-3): 240-247

    [4] Bulanov S V, Khoroshkov V S. Feasibility of using laser ion accelerators in proton therapy. Plasma Physics Reports, 2002, 28(5): 453-456

    [5] Borghesi M, Fuchs J, Bulanov S V, Mackinnon A J, Patel P K, Roth M. Fast ion generation by high-intensity laser irradiation of solid targets and applications. Fusion Science and Technology, 2006, 49(3): 412-439

    [6] Sagisaka A, Daido H, Nashima S, Orimo S, Ogura K, Mori M, Yogo A, Ma J, Daito I, Pirozhkov A S, Bulanov S V, Esirkepov T Zh, Shimizu K, Hosoda M. Simultaneous generation of a proton beam and terahertz radiation in high-intensity laser and thin-foil interaction. Applied Physics B, 2008, 90(3-4): 373-377

    [7] Bulanov S V, Naumova N M, Pegoraro F. Interaction of an ultrashort, relativistically strong laser pulse with an overdense plasma. Physics of Plasmas, 1994, 1(3): 745-757

    [8] Vshivkov VA, Naumova N M, Pegoraro F, Bulanov S V. Nonlinear electrodynamics of the interaction of ultra-intense laser pulses with a thin foil. Physics of Plasmas, 1998, 5(7): 2727-2741

    [9] Zepf M, Tsakiris G D, Pretzler G, Watts I, Chambers D M, Norreys P A, Andiel U, Dangor A E, Eidmann K, Gahn C, Machacek A, Wark J S, Witte K. Role of the plasma scale length in the harmonic generation from solid targets. Physical Review E, 1998, 58(5): R5253-R5256

    [10] Teubner U, Eidmann K, Wagner U, Andiel U, Pisani F, Tsakiris G D, Witte K, Meyer-ter-Vehn J, Schlegel T, Frster E. Harmonic emission from the rear side of thin overdense foils irradiated with intense ultrashort laser pulses. Physical Review Letters, 2004, 92(18): 185001

    [11] Pirozhkov A S, Bulanov S V, Esirkepov T Zh, Mori M, Sagisaka A, Daido H. Generation of high-energy attosecond pulses by the relativistic-irradiance short laser pulse interacting with a thin foil. Physics Letters A, 2006, 349(1-4): 256-263

    [12] Pirozhkov A S, Bulanov S V, Esirkepov T Zh, Mori M, Sagisaka A, Daido H. Attosecond pulse generation in the relativistic regime of the laser-foil interaction: the sliding mirror model. Physics of Plasmas, 2006, 13(1): 013107

    [13] Sagisaka A, Daido H, Pirozhkov A S, Ma J, Yogo A, Ogura K, Orimo S, Mori M, Nishiuchi M, Kawachi T, Bulanov S V, Esirkepov T Zh, Oishi Y, Nayuki T, Fujii T, Nemoto K, Nagatomo H. Simultaneous generation of UV harmonics and protons from a thin-foil target with a high-intensity laser. IEEE Transactions on Plasma Science, 2008, 36(4): 1812-1816

    [14] Descamps D, Lyng C, Norin J, L’Huillier A, Wahlstrm C-G, Hergott J-F, Merdji H, Salieres P, Bellini M, Hnsch T W. Extreme ultraviolet interferometry measurements with high-order harmonics. Optics Letters, 2000, 25(2): 135-137

    [15] Theobald W, Hβner R, Wülker C, Sauerbrey R. Temporally resolved measurement of electron densities (>1023 cm-3) with high harmonics. Physical Review Letters, 1996, 77(2): 298-301

    [16] Tatarakis M, Gopal A, Watts I, Beg F N, Dangor A E, Krushelnick K, Wagner U, Norreys P A, Clark E L, Zepf M, Evans R G. Measurements of ultrastrong magnetic fields during relativistic laser-plasma interactions. Physics of Plasmas, 2002, 9(5): 2244-2250

    [17] Wagner U, Tatarakis M, Gopal A, Beg F N, Clark E L, Dangor A E, Evans R G, Haines M G, Mangles S P D, Norreys P A, Wei M S, Zepf M, Krushelnick K. Laboratory measurements of 0.7 GG magnetic fields generated during high-intensity laser interactions with dense plasmas. Physical Review E, 2004, 70(2): 026401

    [18] Krushelnick K, Watts I, Tatarakis M, Gopal A, Wagner U, Beg F N, Clark E L, Clarke R J, Dangor A E, Norreys PA, Wei M S, Zepf M. Using self-generated harmonics as a diagnostic of high intensity laser-produced plasmas. Plasma Physics and Controlled Fusion, 2002, 44(12B): B233-B245

    [19] Kiriyama H, Mori M, Nakai Y, Shimomura T, Tanoue M, Akutsu A, Kondo S, Kanazawa S, Okada H, Motomura T, Daido H, Kimura T, Tajima T. High-contrast, high-intensity laser pulse generation using a nonlinear preamplifier in a Ti:sapphire laser system. Optics Letters, 2008, 33(7): 645-647

    [20] Kiriyama H, Mori M, Nakai Y, Shimomura T, Tanoue M, Akutsu A, Okada H, Motomura T, Kondo S, Kanazawa S, Sagisaka A, Ma J, Daito I, Kotaki H, Daido H, Bulanov S, Kimura T, Tajima T. Generation of high-contrast and high-intensity laser pulses using an OPCPA preamplifier in a double CPA, Ti:sapphire laser system. Optics Communications, 2009, 282(4): 625-628

    [21] Mori M, Yogo A, Kiriyama H, Nishiuchi M, Ogura K, Orimo S, Ma J, Sagisaka A, Kanazawa S, Kondo S, Nakai Y, Akutsu A, Yamamoto Y, Shimomura T, Tanoue M, Nakamura S, Shirai T, Iwashita Y, Noda A, Oishi Y, Nayuki T, Fujii T, Nemoto K, Choi I W, Yu T J, Ko D-K, Lee J, Daido H, Esirkepov T Zh, Bulanov S V, Bolton P R, Kimura T. New method to measure the rise time of a fast pulse slicer for laser ion acceleration research. IEEE transactions on plasma science, 2008, 36(4): 1872-1877

    [22] Nakamura S, Iwashita Y, Noda A, Shirai T, Tongu H, Fukumi A, Kado M, Yogo A, Mori M, Orimo S, Ogura K, Sagisaka A, Nishiuchi M, Hayashi Y, Li Z, Daido H, Wada Y. Real-time optimization of proton production by intense short-pulse laser with time-of-flight measurement. Japanese Journal of Applied Physics, 2006, 45(34): L913-L916

    [23] Yogo A, Daido H, Fukumi A, Li Z, Ogura K, Sagisaka K, Pirozhkov A S, Nakamura S, Iwashita Y, Shirai T, Noda A, Oishi Y, Nayuki T, Fujii T, Nemoto K, Choi I W, Sung J H, Ko D-K, Lee J, Kaneda M, Itoh A. Laser prepulse dependency of proton-energy distributions in ultraintense laser-foil interactions with an online time-of-flight technique. Physics of Plasmas, 2007, 14(4): 043104

    [24] Nashima S, Shimizu K, Hosoda M, Murakami H, Orimo S, Ogura K, Mori M, Sagisaka A, Daido H. Generation of intense terahertz radiation from laser-produced plasma of metal foil target. In: Proceedings of the 33rd International Conference on Infrared, Millimeter, and Terahertz Waves (IRMMW-THz 2008), 2008, 1-2

    [25] Nishiuchi M, Daido H, Yogo A, Orimo S, Ogura K, Ma J, Sagisaka A, Mori M, Pirozhkov A S, Kiriyama H, Bulanov S V, Esirkepov T Zh, Choi I W, Kim C M, Jeong T M, Yu T J, Sung J H, Lee S K, Hafz N, Pae K H, Noh Y-C, Ko D-K, Lee J, Oishi Y, Nemoto K, Nagatomo H, Nagai K, Azuma H. Efficient production of a collimated MeV proton beam from a polyimide target driven by an intense femtosecond laser pulse. Physics of Plasmas, 2008, 15(5): 053104

    [26] Orimo S, Nishiuchi M, Daido H, Yogo A, Ogura K, Sagisaka A, Li Z, Pirozhkov A S, Mori M, Kiriyama H, Kanazawa S, Kondo S, Yamamoto Y, Shimomura T, Tanoue M, Nakai Y, Akutsu A, Nakamura S, Shirai T, Iwashita Y, Noda A, Oishi Y, Nemoto K, Choi I W, Yu T J, Sung J H, Jeong T M, Kim H-T, Hong K-H, Noh Y-C, Ko D-K, Lee J. Simultaneous proton and X-ray imaging with femtosecond intense laser driven plasma source. Japanese Journal of Applied Physics, 2007, 46(1): 5853-5858

    A. SAGISAKA, H. DAIDO, A. S. PIROZHKOV, M. MORI, A. YOGO, K. OGURA, S. ORIMO, M. NISHIUCHI, J. MA, H. KIRIYAMA, S. KANAZAWA, S. KONDO, Y. NAKAI, T. SHIMOMURA, M. TANOUE, A. AKUTSU, H. OKADA, T. MOTOMURA, T. KAWACHI, S. V. BULANOV, Timur Zh. ESIRKEPOV, S. NASHIMA, Makoto HOSODA, Hideo NAGATOMO, Y.J. OISHI, K. NEMOTO, Il Woo CHOI, S. LEE, J. LEE. High-intensity laser-driven particle and electromagnetic wave sources for science, industry, and medicine[J]. Frontiers of Optoelectronics, 2009, 2(3): 299
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