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Title: Laser-heated capillary discharge plasma waveguides for electron acceleration to 8 GeV

Journal Article · · Physics of Plasmas
DOI:https://doi.org/10.1063/5.0002769· OSTI ID:1780739
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  1. Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
  2. Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States); Univ. of California, Berkeley, CA (United States)
  3. University of Eindhoven (The Netherlands)
  4. Russian Academy of Sciences (RAS), Moscow (Russia); National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Moscow (Russia)
  5. Russian Academy of Sciences (RAS), Moscow (Russia)
  6. Institute of Physics ASCR, v.v.i. (FZU), Prague (Czech Republic)
  7. Russian Academy of Sciences (RAS), Moscow (Russia); Institute of Physics ASCR, v.v.i. (FZU), Prague (Czech Republic)

A plasma channel created by the combination of a capillary discharge and inverse Bremsstrahlung laser heating enabled the generation of electron bunches with energy up to 7.8 GeV in a laser-driven plasma accelerator. The capillary discharge created an initial plasma channel and was used to tune the plasma temperature, which optimized laser heating. Although optimized colder initial plasma temperatures reduced the ionization degree, subsequent ionization from the heater pulse created a fully ionized plasma on-axis. The heater pulse duration was chosen to be longer than the hydrodynamic timescale of ≈ 1 ns, such that later temporal slices were more efficiently guided by the channel created by the front of the pulse. Here, simulations are presented which show that this thermal self-guiding of the heater pulse enabled channel formation over 20 cm. The post-heated channel had lower on-axis density and increased focusing strength compared to relying on the discharge alone, which allowed for guiding of relativistically intense laser pulses with a peak power of 0.85 PW and wakefield acceleration over 15 diffraction lengths. Electrons were injected into the wake in multiple buckets and times, leading to several electron bunches with different peak energies. To create single electron bunches with low energy spread, experiments using localized ionization injection inside a capillary discharge waveguide were performed. A single injected bunch with energy 1.6 GeV, charge 38 pC, divergence 1 mrad, and relative energy spread below 2% full-width half-maximum was produced in a 3.3 cm-long capillary discharge waveguide. This development shows promise for mitigation of energy spread and future high efficiency staged acceleration experiments.

Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States). National Energy Research Scientific Computing Center (NERSC)
Sponsoring Organization:
USDOE Office of Science (SC), High Energy Physics (HEP); Alexander von Humboldt Foundation; European Regional Development Fund (ERDF); National Science Foundation (NSF)
Grant/Contract Number:
AC02-05CH11231; FG02-12ER41798
OSTI ID:
1780739
Alternate ID(s):
OSTI ID: 1617256
Journal Information:
Physics of Plasmas, Vol. 27, Issue 5; Conference: 61.Annual Meeting of the APS Division of Plasma Physics, Fort Lauderdale, FL (United States), 21–25 Oct 2019; ISSN 1070-664X
Publisher:
American Institute of Physics (AIP)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 20 works
Citation information provided by
Web of Science

References (40)

Highly efficient laser-driven Compton gamma-ray source journal January 2019
Beam manipulation for compact laser wakefield accelerator based free-electron lasers journal February 2015
Two-Color Laser-Ionization Injection journal March 2014
Numerical investigation of electron self-injection in the nonlinear bubble regime journal October 2013
Thermal emittance from ionization-induced trapping in plasma accelerators journal October 2014
Control of laser plasma accelerated electrons for light sources journal April 2018
Transverse Interferometry of a Hydrogen-Filled Capillary Discharge Waveguide journal January 2007
Investigation of a hydrogen plasma waveguide journal December 2000
An accurate and efficient laser-envelope solver for the modeling of laser-plasma accelerators journal October 2017
Physics considerations for laser-plasma linear colliders journal October 2010
Multi-GeV Electron Beams from Capillary-Discharge-Guided Subpetawatt Laser Pulses in the Self-Trapping Regime journal December 2014
Laser beam coupling with capillary discharge plasma for laser wakefield acceleration applications journal August 2017
Developments in laser-driven plasma accelerators journal September 2013
Laser-wakefield acceleration of electron beams in a low density plasma channel journal March 2010
Quasi-monoenergetic laser-plasma acceleration of electrons to 2 GeV journal June 2013
Stable multi-GeV electron accelerator driven by waveform-controlled PW laser pulses journal August 2017
Quasi-monoenergetic and tunable X-rays from a laser-driven Compton light source journal November 2013
Laser red shifting based characterization of wakefield excitation in a laser-plasma accelerator journal June 2013
Enhancement of Electron Energy to the Multi-GeV Regime by a Dual-Stage Laser-Wakefield Accelerator Pumped by Petawatt Laser Pulses journal October 2013
Laser-heater assisted plasma channel formation in capillary discharge waveguides journal February 2013
Electron-ion relaxation in a plasma interacting with an intense laser field journal January 1994
Diagnostics, Control and Performance Parameters for the BELLA High Repetition Rate Petawatt Class Laser journal August 2017
Demonstration of a Narrow Energy Spread, 0.5 GeV Electron Beam from a Two-Stage Laser Wakefield Accelerator journal July 2011
Demonstration Scheme for a Laser-Plasma-Driven Free-Electron Laser journal September 2012
Compact X-ray Free-Electron Laser from a Laser-Plasma Accelerator Using a Transverse-Gradient Undulator journal November 2012
Simulations of a hydrogen-filled capillary discharge waveguide journal December 2001
Compact quasi-monoenergetic photon sources from laser-plasma accelerators for nuclear detection and characterization
  • Geddes, Cameron G. R.; Rykovanov, Sergey; Matlis, Nicholas H.
  • Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, Vol. 350 https://doi.org/10.1016/j.nimb.2015.01.013
journal May 2015
GeV electron beams from a centimetre-scale accelerator journal September 2006
Tunable All-Optical Quasimonochromatic Thomson X-Ray Source in the Nonlinear Regime journal May 2015
Laser-driven plasma-wave electron accelerators journal March 2009
Physics of laser-driven plasma-based electron accelerators journal August 2009
Petawatt Laser Guiding and Electron Beam Acceleration to 8 GeV in a Laser-Heated Capillary Discharge Waveguide journal February 2019
Staging of laser-plasma accelerators journal May 2016
Transient behavior of a supersonic three-dimensional micronozzle with an intersecting capillary journal February 2016
Molecular-dynamic calculation of the inverse-bremsstrahlung heating of non-weakly-coupled plasmas journal November 2004
Laser-driven soft-X-ray undulator source journal September 2009
All-optical Compton gamma-ray source journal April 2012
Plasma equilibrium inside various cross-section capillary discharges journal May 2017
Light pipe for high intensity laser pulses journal October 1993
Laser-Driven Acceleration of Electrons in a Partially Ionized Plasma Channel journal March 2008