4.8 Article

Demonstration of a positron beam-driven hollow channel plasma wakefield accelerator

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NATURE COMMUNICATIONS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms11785

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资金

  1. United States Department of Energy (US DOE)
  2. DOE [DE-AC02-76SF00515, DE-SC0010064, DE-SC0008491, DE-SC0008316]
  3. Research Council of Norway
  4. NSF [ACI-1339893, PHY-0960344]
  5. European Research Council (X-Five project) [339128]
  6. NSFC [11425521, 11535006, 11175102]
  7. National Basic Research Program of China [2013CBA01501]
  8. European Research Council (ERC) [339128] Funding Source: European Research Council (ERC)
  9. Direct For Mathematical & Physical Scien
  10. Division Of Physics [1500630] Funding Source: National Science Foundation

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Plasma wakefield accelerators have been used to accelerate electron and positron particle beams with gradients that are orders of magnitude larger than those achieved in conventional accelerators. In addition to being accelerated by the plasma wakefield, the beam particles also experience strong transverse forces that may disrupt the beam quality. Hollow plasma channels have been proposed as a technique for generating accelerating fields without transverse forces. Here we demonstrate a method for creating an extended hollow plasma channel and measure the wakefields created by an ultrarelativistic positron beam as it propagates through the channel. The plasma channel is created by directing a high-intensity laser pulse with a spatially modulated profile into lithium vapour, which results in an annular region of ionization. A peak decelerating field of 230MeVm(-1) is inferred from changes in the beam energy spectrum, in good agreement with theory and particle-in-cell simulations.

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