2020
DOI: 10.1103/physrevaccelbeams.23.081302
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Experimental study of wakefields driven by a self-modulating proton bunch in plasma

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Cited by 11 publications
(11 citation statements)
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“…This is the likely reason why the measured accelerated charge [31,35] is significantly smaller than that simulated without the effect of boundary crossing [21].…”
Section: Summary Of Experimental Results From Awake Runmentioning
confidence: 90%
“…This is the likely reason why the measured accelerated charge [31,35] is significantly smaller than that simulated without the effect of boundary crossing [21].…”
Section: Summary Of Experimental Results From Awake Runmentioning
confidence: 90%
“…Hence, the charge distribution appears continuous. The transverse extent of the distribution along the bunch depends on the transverse momentum acquired by the defocused protons during the growth of the instability 10,19 . It is therefore a probe for the amplitude of the wakefields at the early stage of SMI.…”
Section: Resultsmentioning
confidence: 99%
“…They must self-modulate [6] in a first plasma to be transformed into a train of bunches with period ∼1 mm to resonantly drive wakefields with GV/m amplitude in a second plasma [7]. Experiments with the SPS p + bunch as driver have already demonstrated the occurrence of self-modulation [8,9], as well as many of its characteristics [10][11][12][13][14][15]. They have also demonstrated that externally-injected test electrons can be accelerated (in the self-modulator) from ∼19 MeV to ∼2 GeV [16,17] over less than 10 m [12].…”
Section: Figmentioning
confidence: 99%
“…Experiments with the SPS p + bunch as driver have already demonstrated the occurrence of self-modulation [8,9], as well as many of its characteristics [10][11][12][13][14][15]. They have also demonstrated that externally-injected test electrons can be accelerated (in the self-modulator) from ∼19 MeV to ∼2 GeV [16,17] over less than 10 m [12].…”
Section: Figmentioning
confidence: 99%
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