arXiv Open Access 2014

Proton acceleration by a relativistic laser frequency-chirp driven plasma snowplow

Aakash A. Sahai T. C. Katsouleas R. A. Bingham F. S. Tsung A. R. Tableman +2 lainnya
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Abstrak

We analyze the use of a relativistic laser pulse with a controlled frequency chirp incident on a rising plasma density gradient to drive an acceleration structure for proton and light-ion acceleration. The Chirp Induced Transparency Acceleration (ChITA) scheme is described with an analytical model of the velocity of the snowplow at critical density on a pre-formed rising plasma density gradient that is driven by a positive-chirp in the frequency of a relativistic laser pulse. The velocity of the ChITA-snowplow is shown to depend upon rate of rise of the frequency of the relativistic laser pulse represented by $\frac{ε_0}θ$ where, $ε_0 = \frac{Δω_0}{ω_0}$ and chirping spatial scale-length, $θ$, the normalized magnetic vector potential of the laser pulse $a_0$ and the plasma density gradient scale-length, $α$. We observe using 1-D OSIRIS simulations the formation and forward propagation of ChITA-snowplow, being continuously pushed by the chirping laser at a velocity in accordance with the analytical results. The trace protons reflect off of this propagating snowplow structure and accelerate mono-energetically. The control over ChITA-snowplow velocity allows the tuning of accelerated proton energies.

Penulis (7)

A

Aakash A. Sahai

T

T. C. Katsouleas

R

R. A. Bingham

F

F. S. Tsung

A

A. R. Tableman

M

M. Tzoufras

W

W. B. Mori

Format Sitasi

Sahai, A.A., Katsouleas, T.C., Bingham, R.A., Tsung, F.S., Tableman, A.R., Tzoufras, M. et al. (2014). Proton acceleration by a relativistic laser frequency-chirp driven plasma snowplow. https://arxiv.org/abs/1405.4309

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