K A Marsh
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Explore the profile of K A Marsh including associated specialties, affiliations and a list of published articles.
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42
Citations
279
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Recent Articles
1.
Huang C, Zhang C, Marsh K, Joshi C, Wang J
Phys Rev Lett
. 2024 Dec;
133(22):225101.
PMID: 39672145
The formation and subsequent self-organization of a spiral electron density modulation initialized in a plasma produced by optical-field ionization of various gas species is studied. Our analytical model predicts that...
2.
San Miguel Claveria P, Adli E, Amorim L, An W, Clayton C, Corde S, et al.
Philos Trans A Math Phys Eng Sci
. 2019 Jun;
377(2151):20180173.
PMID: 31230577
Beam-driven plasma wakefield acceleration (PWFA) has demonstrated significant progress during the past two decades of research. The new Facility for Advanced Accelerator Experimental Tests (FACET) II, currently under construction, will...
3.
Vafaei-Najafabadi N, Amorim L, Adli E, An W, Clarke C, Clayton C, et al.
Philos Trans A Math Phys Eng Sci
. 2019 Jun;
377(2151):20180184.
PMID: 31230576
This paper discusses the properties of electron beams formed in plasma wakefield accelerators through ionization injection. In particular, the potential for generating a beam composed of co-located multi-colour beamlets is...
4.
King P, Lemos N, Shaw J, Milder A, Marsh K, Pak A, et al.
Rev Sci Instrum
. 2019 Apr;
90(3):033503.
PMID: 30927775
A versatile set of methods for analyzing x-ray energy spectra and photon flux has been developed for laser plasma accelerator experiments driven by picosecond lasers. Forward fit provides extrapolated broad...
5.
Lindstrom C, Adli E, Allen J, An W, Beekman C, Clarke C, et al.
Phys Rev Lett
. 2018 Apr;
120(12):124802.
PMID: 29694092
Hollow channel plasma wakefield acceleration is a proposed method to provide high acceleration gradients for electrons and positrons alike: a key to future lepton colliders. However, beams which are misaligned...
6.
Doche A, Beekman C, Corde S, Allen J, Clarke C, Frederico J, et al.
Sci Rep
. 2017 Oct;
7(1):14180.
PMID: 29079817
High gradients of energy gain and high energy efficiency are necessary parameters for compact, cost-efficient and high-energy particle colliders. Plasma Wakefield Accelerators (PWFA) offer both, making them attractive candidates for...
7.
Albert F, Lemos N, Shaw J, Pollock B, Goyon C, Schumaker W, et al.
Phys Rev Lett
. 2017 Apr;
118(13):134801.
PMID: 28409970
We investigate a new regime for betatron x-ray emission that utilizes kilojoule-class picosecond lasers to drive wakes in plasmas. When such laser pulses with intensities of ∼5×10^{18} W/cm^{2} are focused...
8.
Shaw J, Lemos N, Amorim L, Vafaei-Najafabadi N, Marsh K, Tsung F, et al.
Phys Rev Lett
. 2017 Feb;
118(6):064801.
PMID: 28234524
We show the first experimental demonstration that electrons being accelerated in a laser wakefield accelerator operating in the forced or blowout regimes gain significant energy from both the direct laser...
9.
Clayton C, Adli E, Allen J, An W, Clarke C, Corde S, et al.
Nat Commun
. 2016 Aug;
7:12483.
PMID: 27527569
The preservation of emittance of the accelerating beam is the next challenge for plasma-based accelerators envisioned for future light sources and colliders. The field structure of a highly nonlinear plasma...
10.
Corde S, Adli E, Allen J, An W, Clarke C, Clausse B, et al.
Nat Commun
. 2016 Jun;
7:11898.
PMID: 27312720
Plasma accelerators driven by particle beams are a very promising future accelerator technology as they can sustain high accelerating fields over long distances with high energy efficiency. They rely on...