Hydrodynamic optical-field-ionized plasma channels

Shalloo, R. J. and Arran, C. and Corner, L. and Holloway, J. and Jonnerby, J. and Walczak, R. and Milchberg, H. M. and Hooker, S. M. (2018) Hydrodynamic optical-field-ionized plasma channels. Physical Review E, 97 (5): 053203. ISSN 2470-0045

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Abstract

We present experiments and numerical simulations which demonstrate that fully ionized, low-density plasma channels could be formed by hydrodynamic expansion of plasma columns produced by optical field ionization. Simulations of the hydrodynamic expansion of plasma columns formed in hydrogen by an axicon lens show the generation of 200 mm long plasma channels with axial densities of order ne(0)=1×1017cm-3 and lowest-order modes of spot size WM≈40μm. These simulations show that the laser energy required to generate the channels is modest: of order 1 mJ per centimeter of channel. The simulations are confirmed by experiments with a spherical lens which show the formation of short plasma channels with 1.5×1017cm-3ne(0)1×1018cm-3 and 61μmWM33μm. Low-density plasma channels of this type would appear to be well suited as multi-GeV laser-plasma accelerator stages capable of long-term operation at high pulse repetition rates.

Item Type:
Journal Article
Journal or Publication Title:
Physical Review E
Additional Information:
Publisher Copyright: © 2018 American Physical Society.
Uncontrolled Keywords:
Research Output Funding/yes_externally_funded
Subjects:
?? yes - externally fundednostatistical and nonlinear physicsstatistics and probabilitycondensed matter physics ??
ID Code:
227336
Deposited By:
Deposited On:
03 Feb 2025 13:05
Refereed?:
Yes
Published?:
Published
Last Modified:
04 Feb 2025 00:38