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michaelbussmann acceleration [177 articles]

Recent papers added to michaelbussmann library classified by the tag acceleration. You can also see everyone's acceleration.
  • Nonlinear laser focusing using a conical guide and generation of energetic ions
    Physical Review E (Statistical, Nonlinear, and Soft Matter Physics), Vol. 78, No. 3. (17 September 2008), 036405.
    by Lihua Cao, Wei Yu, MY Yu, Han Xu, XT He, Yuqiu Gu, Zhanjun Liu, Jinghong Li, Chunyang Zheng
  • Beam Loading in the Nonlinear Regime of Plasma-Based Acceleration
    Physical Review Letters, Vol. 101, No. 14. (29 September 2008), 145002.
    by M Tzoufras, W Lu, FS Tsung, C Huang, WB Mori, T Katsouleas, J Vieira, RA Fonseca, LO Silva
  • On laser wakefield acceleration in plasma channels
    Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 410, No. 3. (21 June 1998), pp. 469-476.
  • Near-GeV electron beam from a laser wakefield accelerator in the bubble regime
    Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 554, No. 1-3. (01 December 2005), pp. 49-58.
    by N Hafz, V Kulagin, J Lee, H Suk
  • Recent progress on laser acceleration
    Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 455, No. 1. (21 November 2000), pp. 140-147.
    posted to particle overview laser acceleration by michaelbussmann on 2008-10-07 17:08:45 as ***
  • Energy enhancement in the self-injected laser wakefield acceleration using tapered plasma densities
    Physics Letters A, Vol. 316, No. 3-4. (22 September 2003), pp. 233-237.
    by H Suk
  • Enhanced electron trapping by a static longitudinal magnetic field in laser wakefield acceleration
    Physics Letters A, Vol. 372, No. 15. (07 April 2008), pp. 2684-2687.
    by M Hur, D Gupta, H Suk
  • Femtosecond Thomson scattering X-ray source based on laser wakefield accelerator for ultrafast X-ray absorption spectroscopy☆
    Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, Vol. 241, No. 1-4. (December 2005), pp. 82-86.
    by D Oulianov, R Crowell, D Gosztola, Y Li
  • Coronary angiography with nonlinear Thomson scattering
    Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 455, No. 1. (21 November 2000), pp. 128-129.
    by A Amatuni
  • Experiments of high energy gain laser wakefield acceleration
    Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 410, No. 3. (21 June 1998), pp. 357-363.
    by H Dewa, H Ahn, H Harano, M Kando, K Kinoshita, S Kondoh, H Kotaki, K Nakajima, H Nakanishi, A Ogata
  • Conceptual design of a laser wakefield acceleration experiment with external bunch injection
    Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 566, No. 2. (15 October 2006), pp. 244-249.
  • Extremely short relativistic-electron-bunch generation in the laser wakefield via novel bunch injection scheme
    Phys. Rev. ST Accel. Beams, Vol. 7, No. 12. (6 December 2004), 121301.
  • Probing of nonlinear evolution of laser wakefield by Raman scattering of laser light
    Physics of Plasmas, Vol. 15, No. 9. (24 September 2008), 093107.
    by Weimin Zhou, Kunioki Mima, Tatsufumi Nakamura, Hideo Nagatomo
  • Charged particle acceleration in dense plasma channels
    Physics of Plasmas, Vol. 15, No. 10. (6 October 2008), 103105.
    by IY Dodin, NJ Fisch
  • Influence of target thickness on the generation of high-density ion bunches by ultrashort circularly polarized laser pulses
    Physics of Plasmas, Vol. 15, No. 9. (19 September 2008), 093106.
    by Yan Yin, Wei Yu, MY Yu, Anle Lei, Xiaoqing Yang, Han Xu, Vinod K Senecha
  • Effects of plasma density on relativistic self-injection for electron laser wake-field acceleration
    Physics of Plasmas, Vol. 11, No. 12. (29 October 2004), pp. 5379-5386.
  • Multiple self-injection in the acceleration of monoenergetic electrons by a laser wake field
    Physics of Plasmas, Vol. 15, No. 4. (4 April 2008), 043102.
  • Electron self-injection during interaction of tightly focused few-cycle laser pulses with underdense plasma
    Physical Review E (Statistical, Nonlinear, and Soft Matter Physics), Vol. 78, No. 3. (19 September 2008), 036406.
    by Alexei Zhidkov, Takashi Fujii, Koshichi Nemoto
  • Positron Injection and Acceleration on the Wake Driven by an Electron Beam in a Foil-and-Gas Plasma
    Physical Review Letters, Vol. 101, No. 12. (17 September 2008), 124801.
    by X Wang, R Ischebeck, P Muggli, T Katsouleas, C Joshi, WB Mori, MJ Hogan
  • Theory of Light-Ion Acceleration Driven by a Strong Charge Separation
    Physical Review Letters, Vol. 101, No. 11. (10 September 2008), 115001.
  • Parameter study of acceleration of externally injected electrons in the linear laser wakefield regime
    Physics of Plasmas, Vol. 15, No. 9. (9 September 2008), 093102.
  • Reversed scheme of thin foil acceleration
    Applied Physics Letters, Vol. 93, No. 10. (8 September 2008), 101502.
    posted to thin plasma picosecond laser foil acceleration ablation by michaelbussmann on 2008-09-11 12:15:55 as *
  • Intense gamma-Ray Source in the Giant-Dipole-Resonance Range Driven by 10-TW Laser Pulses
    Physical Review Letters, Vol. 101, No. 10. (2008), 105002.
  • Coherent and incoherent radiation from a channel-guided laser wakefield accelerator
    New J. Phys., Vol. 10, No. 8. (29 August 2008), 083043.
  • Dependence on laser intensity and pulse duration in proton acceleration by irradiation of ultrashort laser pulses on a Cu foil target
    Physics of Plasmas, Vol. 12, No. 7. (23 June 2005), 073102.
  • Filamented transport of laser-generated relativistic electrons penetrating a solid target
    Physics of Plasmas, Vol. 9, No. 3. (March 2002), pp. 941-948.
    by Laurent Gremillet, Guy Bonnaud, Fran\ccois Amiranoff
  • Proton beams generated with high-intensity lasers: Applications to medical isotope production
    Applied Physics Letters, Vol. 83, No. 15. (13 October 2003), pp. 3039-3041.
  • Forward Ion Acceleration in Thin Films Driven by a High-Intensity Laser
    Physical Review Letters, Vol. 84, No. 18. (1 May 2000), pp. 4108-4111.
  • Practicability of protontherapy using compact laser systems
    Medical Physics, Vol. 31, No. 6. (June 2004), pp. 1587-1592.
    by Victor Malka, Sven Fritzler, Erik Lefebvre, Emmanuel D'humières, Régis Ferrand, Georges Grillon, Claude Albaret, Samuel Meyroneinc, Jean P Chambaret, Andre Antonetti, Danièle Hulin
  • Modeling of the electrostatic sheath shape on the rear target surface in short-pulse laser-driven proton acceleration
    Laser and Particle Beams, Vol. 24, No. 01. (20 October 2006), pp. 163-168.
    by ERIK Brambrink, Markus Roth, ABEL Blazevic, Theodor Schlegel
  • High energy electrons, nuclear phenomena and heating in petawatt laser-solid experiments
    Laser and Particle Beams, Vol. 17, No. 04. (25 January 1999), pp. 773-783.
    by TE Cowan, MD Perry, MH Key, TR Ditmire, SP Hatchett, EA Henry, JD Moody, MJ Moran, DM Pennington, TW Phillips, TC Sangster, JA Sefcik, MS Singh, RA Snavely, MA Stoyer, SC Wilks, PE Young, Y Takahashi, B Dong, W Fountain, T Parnell, J Johnson, AW Hunt, T Kühl
  • Analytical description of rippling effect and ion acceleration in plasma produced by a short laser pulse
    Laser and Particle Beams, Vol. 24, No. 01. (6 February 2006), pp. 15-25.
    by S Glowacz, H Hora, J Badziak, S Jablonski, YU Cang, F Osman
  • Gamma-neutron activation experiments using laser wakefield accelerators
    The 42nd annual meeting of the division of plasma physics of the American Physical Society and the 10th international congress on plasma physics, Vol. 8, No. 5. (May 2001), pp. 2510-2516.
    by WP Leemans, D Rodgers, PE Catravas, CGR Geddes, G Fubiani, E Esarey, BA Shadwick, R Donahue, A Smith
    posted to acceleration activation gamma laser neutron wakefield by michaelbussmann on 2008-08-28 16:26:46 as **
  • Laser-triggered ion acceleration and table top isotope production
    Applied Physics Letters, Vol. 78, No. 5. (29 January 2001), pp. 595-597.
    posted to acceleration deuteron ion isotope laser production table-top by michaelbussmann on 2008-08-28 16:15:42 as *
  • Accelerating monoenergetic protons from ultrathin foils by flat-top laser pulses in the directed-Coulomb-explosion regime
    Physical Review E (Statistical, Nonlinear, and Soft Matter Physics), Vol. 78, No. 2. (2008)
  • Ion acceleration in expanding multispecies plasmas
    Physics of Plasmas, Vol. 11, No. 6. (12 May 2004), pp. 3242-3250.
  • Target charging effects on proton acceleration during high-intensity short-pulse laser-solid interactions
    Applied Physics Letters, Vol. 84, No. 15. (12 April 2004), pp. 2766-2768.
    by FN Beg, MS Wei, AE Dangor, A Gopal, M Tatarakis, K Krushelnick, P Gibbon, EL Clark, RG Evans, KL Lancaster, PA Norreys, KWD Ledingham, P Mckenna, M Zepf
  • Characterization of multiterawatt laser-solid interactions for proton acceleration
    Review of Scientific Instruments, Vol. 73, No. 12. (December 2002), pp. 4176-4184.
    by P Mckenna, KWD Ledingham, I Spencer, T Mccany, RP Singhal, C Ziener, PS Foster, EJ Divall, CJ Hooker, D Neely, AJ Langley, RJ Clarke, PA Norreys, K Krushelnick, EL Clark
  • Stable generation of GeV-class electron beams from self-guided laser-plasma channels
    Nat Photon, Vol. advanced online publication (10 August 2008)
    by Nasr AM Hafz, Tae M Jeong, Il W Choi, Seong K Lee, Ki H Pae, Victor V Kulagin, Jae H Sung, Tae J Yu, Kyung H Hong, Tomonao Hosokai, John R Cary, Do K Ko, Jongmin Lee
  • Generation of Stable, Low-Divergence Electron Beams by Laser-Wakefield Acceleration in a Steady-State-Flow Gas Cell
    Physical Review Letters, Vol. 101, No. 8. (2008)
    by J Osterhoff, A Popp, Zs, B Marx, Rowlands TP Rees, M Fuchs, M Geissler, R Hörlein, B Hidding, S Becker, EA Peralta, U Schramm, F Grüner, D Habs, F Krausz, SM Hooker, S Karsch
  • Ultrahigh brightness electron beams by plasma-based injectors for driving all-optical free-electron lasers
    Phys. Rev. ST Accel. Beams, Vol. 11, No. 7. (29 July 2008)
  • Electron acceleration by amplified wakefield generated by two copropagating laser pulses in plasma
    Phys. Rev. ST Accel. Beams, Vol. 11, No. 7. (28 July 2008)
    by Gaurav Raj, Ajay K Upadhyaya, Rohit K Mishra, Pallavi Jha
  • Laser proton acceleration in a water spray target
    Physics of Plasmas, Vol. 15, No. 8. (13 August 2008), 083106.
  • A compact synchrotron radiation source driven by a laser-plasma wakefield accelerator
    Nat Phys, Vol. 4, No. 2. (February 2008), pp. 130-133.
  • Desktop accelerators: Going up?
    Nat Phys, Vol. 2, No. 1. (January 2006), pp. 11-12.
    by Ken Ledingham
    posted to acceleration laser overview table-top by michaelbussmann on 2008-08-07 15:36:26 as **
  • Proton acceleration mechanisms in high-intensity laser interaction with thin foils
    Physics of Plasmas, Vol. 12, No. 6. (2 June 2005), pp. 062704-1-062704-13.
    by Emmanuel D'humières, Erik Lefebvre, Laurent Gremillet, Victor Malka
  • Laser-induced Coulomb mirror effect: Applications for proton acceleration
    Physics of Plasmas, Vol. 14, No. 3. (2007)
    by I Velchev, E Fourkal, CM Ma
  • Controlled Transport and Focusing of Laser-Accelerated Protons with Miniature Magnetic Devices
    Physical Review Letters, Vol. 101, No. 5. (2008)
    by M Schollmeier, S Becker, Gei\ss M El, KA Flippo, A Blazevic, SA Gaillard, DC Gautier, F Grüner, K Harres, M Kimmel, F Nürnberg, P Rambo, U Schramm, J Schreiber, J Schütrumpf, J Schwarz, NA Tahir, B Atherton, D Habs, BM Hegelich, M Roth
  • Resonant acceleration of electrons by intense circularly polarized Gaussian laser pulses
    Laser and Particle Beams, Vol. 26, No. 01. (2008), pp. 51-60.
    by HY Niu, XT He, B Qiao, CT Zhou