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Information Journal Paper

Title

The effect of magnetic field generated by the interaction of high-intensity laser pulse and low-density plasma on electron bunch acceleration in the bubble regime

Pages

  77-86

Abstract

 In this paper, the effect of the Magnetic field generated by the interaction of femtosecond highintensity laser with under-dense plasma in the Bubble regime has been studied on the acceleration of an electron bunch with Gaussian distribution in velocity and position. It was observed that the Magnetic field could increase the final energy of electron bunch from about 1GeV to approximately 1. 2 GeV and reduce the final energy spread. Also, the final emittance of electron bunch decreased about one order of magnitude and it was equal to. Moreover, we observed that the Magnetic field caused ten percent increment in the number of accelerated electrons.

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    APA: Copy

    Asri, Mehdi. (2018). The effect of magnetic field generated by the interaction of high-intensity laser pulse and low-density plasma on electron bunch acceleration in the bubble regime. JOURNAL OF RESEARCH ON MANY BODY SYSTEMS, 8(17 ), 77-86. SID. https://sid.ir/paper/243752/en

    Vancouver: Copy

    Asri Mehdi. The effect of magnetic field generated by the interaction of high-intensity laser pulse and low-density plasma on electron bunch acceleration in the bubble regime. JOURNAL OF RESEARCH ON MANY BODY SYSTEMS[Internet]. 2018;8(17 ):77-86. Available from: https://sid.ir/paper/243752/en

    IEEE: Copy

    Mehdi Asri, “The effect of magnetic field generated by the interaction of high-intensity laser pulse and low-density plasma on electron bunch acceleration in the bubble regime,” JOURNAL OF RESEARCH ON MANY BODY SYSTEMS, vol. 8, no. 17 , pp. 77–86, 2018, [Online]. Available: https://sid.ir/paper/243752/en

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