Quantum Splitting of Electron Peaks in Ultra-Strong Fields
ID:63 View Protection:ATTENDEE Updated Time:2024-04-22 23:14:47 Hits:262 Oral Presentation

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Abstract
Effects of multiple nonlinear Compton scatterings on electrons in ultra-strong fields are described analytically. Based on this analytic theory, a new pure quantum effect of multiple nonlinear Compton scattering called quantum peak splitting is identified: the electron peak splits into two when the average number of nonlinear Compton scatterings per electron passes the threshold of ~5.1 and is below ~9. One of the split peak is formed by electrons emit 0-3 times and the other is formed by electrons emit ≥4 times. This new effect provides a new mechanism to form electron peaks, puts a new beamstrahlung limit on future colliders and corrects the picture of quantum radiation reaction. Experiment can be performed on lasers with intensity ≥1021W/cm2, which is reachable on PW scale facilities. This new phenomenon can be employed as an in-situ, prepulse insensitive and comparatively precise method to measure the intensity of 0.3-10 PW ultra-strong lasers.
Keywords
Nonlinear Compton scattering,stochastic radiation reaction
Speaker
Bo Zhang
Research Center of Laser Fusion

Submission Author
Bo Zhang Research Center of Laser Fusion
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Important Date
  • Conference Date

    May 13

    2024

    to

    May 17

    2024

  • Mar 31 2024

    Registration deadline

  • Apr 15 2024

    Abstract Submission Deadline

Sponsored By
National Key Laboratory of Shock wave and Detonation Physics
School of Physics, Zhejiang University
Pulsed Power Technology and Application Association of Chinese Nuclear Society
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